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An Electro-hydrodynamics-based model for the ionic conductivity of solid-state nanopores during DNA translocation

机译:基于电流体动力学的DNA移位过程中固态纳米孔的离子电导率模型

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摘要

A solid-state nanopore can be used to sense DNA (or other macromolecules) by monitoring ion-current changes that result from translocation of the molecule through the pore. When transiting a nanopore, the highly negatively charged DNA interacts with a nanopore both electrically and hydrodynamically, causing a current blockage or a current enhancement at different ion concentrations. This effect was previously characterized using a phenomenological model that can be considered as the limit of the electro-hydrodynamics model presented here. We show theoretically that the effect of surface charge of a nanopore (or electroosmotic effect) can be equivalently treated as modifications of electrophoretic mobilities of ions in the pore, providing an improved physical understanding of the current blockage (or enhancement).
机译:固态纳米孔可用于通过监测由分子通过孔的易位引起的离子电流变化来检测DNA(或其他大分子)。当通过纳米孔时,带负电荷的DNA在电和流体动力学方面与纳米孔相互作用,从而在不同的离子浓度下导致电流阻塞或电流增强。以前使用现象学模型(可将其视为此处介绍的电-流体动力学模型的极限)来表征此效果。从理论上讲,我们可以将纳米孔的表面电荷效应(或电渗效应)等效地视为对孔中离子电泳迁移率的修改,从而改善了对电流阻塞的物理理解(或增强)。

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  • 期刊名称 other
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  • 年(卷),期 -1(24),19
  • 年度 -1
  • 页码 195702
  • 总页数 18
  • 原文格式 PDF
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