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Towards high concentration enhancement of microfluidic temperature gradient focusing of sample solutes using combined AC and DC field induced Joule heating

机译:交流和直流电场感应焦耳加热可实现高浓度增强样品溶质的微流体温度梯度聚焦

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摘要

It is challenging to continuously concentrate sample solutes in microfluidic channels. We present an improved electrokinetic technique for enhancing microfluidic temperature gradient focusing (TGF) of sample solutes using combined AC and DC field induced Joule heating effects. The introduction of an AC electric field component services dual functions: one is to produce Joule heat for generating temperature gradient; the other is to suppress electroosmotic flow. Consequently the required DC voltages for achieving sample concentration by Joule heating induced TGF are reduced, thereby leading to smaller electroosmotic flow (EOF) and thus backpressure effects. As a demonstration, the proposed technique can lead to concentration enhancement of sample solutes of more than 2500-fold, which is much higher than the existing literature reported microfluidic concentration enhancement by utilizing the Joule heating induced TGF technique.
机译:在微流体通道中不断浓缩样品溶质是一项挑战。我们提出了一种改进的电动技术,通过结合使用交流和直流电场引起的焦耳热效应来增强样品溶质的微流体温度梯度聚焦(TGF)。交流电场组件的引入具有双重功能:一种是产生焦耳热以产生温度梯度;另一种是产生焦耳热以产生温度梯度。另一个是抑制电渗流。因此,通过焦耳热诱导的TGF达到样品浓缩所需的直流电压降低,从而导致电渗流(EOF)较小,从而产生反压效应。作为论证,所提出的技术可导致样品溶质的浓度提高2500倍以上,这远远高于利用焦耳热诱导TGF技术提高微流体浓度的现有文献报道。

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