2022
Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) Kasra S Tabatabaei, Bach Pham, Chao Pan, Jingqian Liu, Shubham Chandak, Spencer A. Shorkey, Alvaro G. Hernandez, Aleksei Aksimentiev, Min Chen, Charles M. Schroeder, and Olgica Milenkovic. "
Expanding the Molecular Alphabet of DNA-Based Data Storage Systems with Neural Network Nanopore Readout Processing."
Nano Letters (2022).
si.pdf (2.42 MB) 2021
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
Eva Bertosin, Christopher M. Maffeo, Thomas Drexler, Maximilian N. Honemann, Aleksei Aksimentiev, and Hendrik Dietz. "
A nanoscale reciprocating rotary mechanism with coordinated mobility control."
Nature Communications 12:7138 (2021).
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