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MICROFLUIDIC FLOW CONTROL USING INDUCED-CHARGE ELECTROOSMOSIS

机译:感应电荷电渗流微流控

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Work with dc electrokinetics has demonstrated that is works well for bulk transport of fluid an particles. However, it is difficult to achieve control of individual or groups of particles. This paper investigate the use of induced-charge electroosmosis (ICEO) as a means of providing control over particles within bulk dc electroosmotic flow. ICEO flow develops when an electric double layer is induced by an applied electric field at the surface of a conducting object. Here conducting posts are positioned in a microflu-idic channel and ICEO flow develops around them due to an applied ac electric field. A dc electric field is applied across the length of the channel to induce electroosmotic flow past the ICEO region. Around one arrangement of posts the ac and dc flow fields combine to produce a region of recirculation which could be useful for holding a particle or particles within a fixed region of the channel. An alternative arrangement of posts functions to focus the flow into the center of the channel. A numerical model of the system is developed and used to explore means of adapting the ICEO flows to many situations. A method for fabricating a microfluidic system for ICEO flows is presented.
机译:直流电动学的研究表明,该方法对于大量输送流体颗粒非常有效。但是,难以实现对单个或一组颗粒的控制。本文研究了感应电荷电渗(ICEO)作为对大体积直流电渗流中的粒子提供控制的一种方法。当在导电物体表面施加电场感应双电层时,会产生ICEO流动。在这里,导电柱被放置在微流体通道中,由于施加了交流电场,ICEO流动围绕它们发展。在通道的整个长度上施加直流电场,以诱导通过ICEO区域的电渗流。围绕柱子的一种布置,交流和直流流场相结合以产生再循环区域,该再循环区域可用于将一个或多个粒子保持在通道的固定区域内。柱子的替代布置用于将流集中到通道的中心。开发了系统的数值模型,并用于探索使ICEO流量适应多种情况的方法。提出了一种制造用于ICEO流的微流体系统的方法。

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