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电渗流对pH调节的锥形纳米孔中离子电流整流的影响。

Influence of electroosmotic flow on the ionic current rectification in a pH-regulated, conical nanopore.

作者信息

Lin Dong-Huei, Lin Chih-Yuan, Tseng Shiojenn, Hsu Jyh-Ping

机构信息

Institute of Polymer Science and Engineering, National Taiwan University, Taipei, Taiwan 10617.

出版信息

Nanoscale. 2015 Sep 7;7(33):14023-31. doi: 10.1039/c5nr03433g. Epub 2015 Aug 4.

Abstract

The ionic current rectification (ICR) is studied theoretically by considering a pH-regulated, conical nanopore. In particular, the effect of electroosmotic flow (EOF), which was often neglected in previous studies, is investigated by solving a set of coupled Poisson, Nernst-Planck, and Navier-Stokes equations. The behaviors of ICR under various conditions are examined by varying solution pH, bulk ionic concentration, and applied electric potential bias. We show that the EOF effect is significant when the bulk ionic concentration is medium high, the pH is far away from the iso-electric point, and the electric potential bias is high. The percentage deviation in the current rectification ratio arising from neglecting the EOF effect can be on the order of 100%. In addition, the behavior of the current rectification ratio at a high pH taking account of EOF is different both qualitatively and quantitatively from that without taking account of EOF.

摘要

通过考虑一个pH值调节的锥形纳米孔,从理论上研究了离子电流整流(ICR)。具体而言,通过求解一组耦合的泊松方程、能斯特-普朗克方程和纳维-斯托克斯方程,研究了在先前研究中经常被忽视的电渗流(EOF)的影响。通过改变溶液pH值、本体离子浓度和施加的电势偏压,研究了各种条件下ICR的行为。我们表明,当本体离子浓度为中等偏高、pH值远离等电点且电势偏压较高时,EOF效应显著。忽略EOF效应导致的电流整流比的百分比偏差可能达到100%左右。此外,考虑EOF时高pH值下电流整流比的行为在定性和定量上都与不考虑EOF时不同。

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