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双通道双极电极聚焦:同时分离和富集阴离子和阳离子。

Dual-channel bipolar electrode focusing: simultaneous separation and enrichment of both anions and cations.

机构信息

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

出版信息

Lab Chip. 2012 Oct 21;12(20):4107-14. doi: 10.1039/c2lc40660h.

Abstract

In this paper we show that a microelectrochemical cell comprising two parallel microchannels spanned by a single bipolar electrode can be used to simultaneously enrich and separate both anions and cations within a single microchannel. This is possible because reduction and oxidation of water at the cathodic and anodic poles of the bipolar electrode, respectively, lead to ion depletion zones. Specifically, TrisH(+) is neutralized by OH(-) at the cathodic pole, while acetate buffer is neutralized by H(+) at the anodic pole. This action creates a local electric field gradient having both positive and negative components, and hence positive and negative ions follow their respective field gradients leading to separation. In the presence of an opposing counter-flow (pressure driven flow in this case), enrichment also occurs. In addition to separation and enrichment in a single channel, it is also possible to simultaneously enrich cations in one microchannel and anions in the other. Enrichment is achieved by controlling experimental parameters, including the type of buffer and the direction and magnitude of the opposing counter-flow.

摘要

在本文中,我们展示了一种由两个平行微通道组成的微电化学池,通过单个双极电极跨越,可以在单个微通道内同时富集和分离阴离子和阳离子。这是因为双极电极的阴极和阳极分别还原和氧化水,导致离子耗尽区。具体来说,TrisH(+)在阴极被 OH(-)中和,而醋酸盐缓冲液在阳极被 H(+)中和。这种作用产生了具有正、负分量的局部电场梯度,因此正、负离子分别沿着各自的电场梯度移动,从而实现分离。在存在反向对流通(在这种情况下为压力驱动流)的情况下,也会发生富集。除了在单个通道中进行分离和富集外,还可以同时在一个微通道中富集阳离子,而在另一个微通道中富集阴离子。通过控制实验参数,包括缓冲液的类型以及反向对流通的方向和大小,可以实现富集。

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