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具有不对称微流体系统的纳米流体/微流体界面处的离子电流整流

Ionic current rectification at a nanofluidic/microfluidic interface with an asymmetric microfluidic system.

作者信息

Miller Scott A, Kelly Kathleen C, Timperman Aaron T

机构信息

C. Eugene Bennett Department of Chemistry, West Virginia University, Morgantown, WV 26506, USA.

出版信息

Lab Chip. 2008 Oct;8(10):1729-32. doi: 10.1039/b808179d. Epub 2008 Aug 29.

Abstract

A nanofluidic-microfluidic interface is reported that rectifies ionic current using uncoated symmetric nanocapillaries. Previously, ionic current rectification has been achieved by other groups with nanochannels with differential coatings and in nanopores that are conical in shape. This simple device uses nanocapillary membranes (NCMs) with uncoated symmetric channels to connect a microfluidic channel and a larger solution reservoir. The conductivity of the solution in the microchannel appears to be critical in the formation of the low "off" state current and the high "on" state current. It is hypothesized that the "off" state current is low due to the formation of an ion depletion zone in the microchannel while the higher "on" state currents are produced by a zone of enhanced ionic concentration in the microchannel.

摘要

据报道,一种纳米流体-微流体界面可利用未涂层的对称纳米毛细管对离子电流进行整流。此前,其他研究团队通过具有不同涂层的纳米通道以及呈锥形的纳米孔实现了离子电流整流。这种简单的装置使用具有未涂层对称通道的纳米毛细管膜(NCM)来连接微流体通道和更大的溶液储液器。微通道中溶液的电导率似乎对低“关”态电流和高“开”态电流的形成至关重要。据推测,“关”态电流较低是因为在微通道中形成了离子耗尽区,而较高的“开”态电流是由微通道中离子浓度增强的区域产生的。

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