Publications
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Ionic Conductivity, Structural Deformation, and Programmable Anisotropy of DNA Origami in Electric Field." ACS Nano 9:1420-1433 (2015).
Supporting Information (8.81 MB)
"
Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"Close encounters with DNA." J Phys Condens Matter 26:413101 (2014).
"