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首页> 外文期刊>Analytical chemistry >Continuous Flow Microfluidic Demixing of Electrolytes by Induced Charge Electrokinetics in Structured Electrode Arrays
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Continuous Flow Microfluidic Demixing of Electrolytes by Induced Charge Electrokinetics in Structured Electrode Arrays

机译:结构化电极阵列中感应电荷电动力学的电解质连续流微流体分离

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摘要

A continuous flow microfluidic demixing process is realized. It utilizes high external electrical fields that are applied over electrically floating noble metal electrodes in an otherwise straight microchannel. The process converts axial electrical potential gradients into lateral molecular selective transport via a structure oriented ensemble of numerous electrodes. While the individual electrodes locally modify the electrolyte distribution by nonlinear electrokinetic effects and concentration polarization, the directed orientation of the electrode array combines the individual polarization zones to a dedicated molecular enrichment against the generated concentration gradient. A homogeneously concentrated electrolyte can be separated into arbitrarily shaped laminae of increased and depleted concentration by the presented microfluidic demixer.
机译:实现了连续流微流混合工艺。它利用了高的外部电场,该电场施加在否则为笔直的微通道中的电浮动贵金属电极上。该过程通过多个电极的结构定向集成将轴向电势梯度转换为横向分子选择性传输。虽然各个电极通过非线性电动效应和浓度极化来局部改变电解质的分布,但电极阵列的定向取向将各个极化区域组合成一个专用分子富集,以对抗所产生的浓度梯度。均质浓缩的电解质可通过本发明的微流分离器分离成浓度增加和减少的任意形状的薄片。

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