Bibliographic Details
| Title: |
Polymer translocation in solid-state nanopores: Dependence on hydrodynamic interactions and polymer configuration. |
| Authors: |
Edmonds, Christopher M.1 chris.edmonds@gatech.edu, Hesketh, Peter J.2 peter.hesketh@me.gatech.edu, Nair, Sankar3 sankar.nair@chbe.gatech.edu |
| Source: |
Chemical Physics. Nov2013, Vol. 425, p1-13. 13p. |
| Subjects: |
Polymer translocation (Polymers), Solid state chemistry, Nanopores, Hydrodynamics, Brownian motion |
| Abstract: |
Highlights: [•] Polymer translocation in solid state nanopores was modeled by Brownian dynamics. [•] We used polymers that omit (Rouse) and include (Zimm) hydrodynamic interactions. [•] Hydrodynamic interactions are required to better explain experimental results. [•] Rouse theoretical scaling is obtained only when R g ∼ N υ throughout the process. [•] Initial polymer configuration and polymer–pore interactions are important. [ABSTRACT FROM AUTHOR] |
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| Database: |
Engineering Source |