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双极电极聚焦:流变相离子浓度极化。

Bipolar electrode focusing: faradaic ion concentration polarization.

机构信息

Department of Chemistry and Biochemistry, Center for Electrochemistry, University of Texas at Austin, 1 University Station, A5300, Austin, Texas 78712-0165, United States.

出版信息

Anal Chem. 2011 Mar 15;83(6):2351-8. doi: 10.1021/ac103302j. Epub 2011 Feb 25.

Abstract

Bipolar electrode (BPE) focusing locally enriches charged analytes in a microchannel along an electric field gradient that opposes a counter-flow. This electric field gradient forms at the boundary of an ion depletion zone generated by the BPE. Here, we demonstrate concentration enrichment of a fluorescent tracer by up to 500,000-fold. The use of a dual-channel microfluidic configuration, composed of two microchannels electrochemically connected by a BPE, enhances the rate of enrichment (up to 71-fold/s). Faradaic reactions at the ends of the BPE generate ion depletion and enrichment zones in the two, separated channels. This type of device is equivalent to previously reported micro/nanochannel junction arrangements used for ion concentration polarization, but it is experimentally more flexible and much simpler to construct.

摘要

双极电极 (BPE) 聚焦在微通道中沿与逆流相反的电场梯度局部富集带电分析物。这个电场梯度在 BPE 产生的离子耗尽区的边界处形成。在这里,我们展示了荧光示踪剂的浓度富集高达 50 万倍。使用由两个微通道组成的双通道微流控配置,通过 BPE 电化学连接,可提高富集速率(高达 71 倍/秒)。BPE 两端的法拉第反应在两个分离的通道中产生离子耗尽和富集区。这种类型的器件相当于以前报道的用于离子浓差极化的微/纳通道结布置,但它在实验上更灵活,构造也简单得多。

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