Pei Pang, Brian Alan Ashcroft, et al.
ACS Nano
We use a simple Born ion continuum model to analyse the effect of solvation energy change on the translocation of a charged linear polymer molecule through a nanosized vapor gap between two fluid reservoirs. As the effective radius of the discretely spaced charges increases, our model predicts a transition from trapping to diffusion of the molecule in the vapor gap. We discuss the applicability of our model to single-stranded DNA translocations in gaps, suggest experiments to validate our prediction and propose immediate applications of this new trapping mechanism for slowing down DNA motion for electronic DNA sequencing. © Copyright EPLA, 2013.
Pei Pang, Brian Alan Ashcroft, et al.
ACS Nano
Stanislav Polonsky, Venkat S. K. Balagurusamy, et al.
Review of Scientific Instruments
Stanislav Polonsky, Venkat S. K. Balagurusamy, et al.
Review of Scientific Instruments
Jingwei Bai, Deqiang Wang, et al.
Nanoscale