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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Continuous and precise particle separation by electroosmotic flow control in microfluidic devices
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Continuous and precise particle separation by electroosmotic flow control in microfluidic devices

机译:通过微流体装置中的电渗流控制连续而精确地分离颗粒

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A new scheme has been described for continuous particle separation using EOF in micro-fluidic devices. We have previously reported a method for particle separation, called "pinched flow fractionation (PFF)", in which size-dependent and continuous particle separation can be achieved by introducing pressure-driven flows with and without particles into a pinched microchannel. In this study, EOF was employed to transport fluid flows inside a microchannel. By controlling the applied voltage to electrodes inserted in each inlet/outlet port, the flow rates from both inlets, and flow rates distributed to each outlet could be accurately tuned, thus enabling more effective separation compared to the pressure-driven scheme. In the experiment, the particle behaviors were compared between EOF and pressure-driven flow schemes. In addition, micrometer- and submicrometer-sized particles were accurately separated and individually collected using a microchannel with multiple outlet branch channels, demonstrating the high efficiency of the presented scheme.
机译:已经描述了一种在微流体装置中使用EOF进行连续颗粒分离的新方案。先前我们已经报道了一种称为“夹流分馏(PFF)”的颗粒分离方法,该方法可以通过将有或没有颗粒的压力驱动流引入到压紧的微通道中来实现尺寸相关的连续颗粒分离。在这项研究中,EOF被用来在微通道内传输流体。通过控制施加到插入每个入口/出口端口中的电极的电压,可以精确地调整来自两个入口的流速以及分配给每个出口的流速,因此与压力驱动方案相比,可以实现更有效的分离。在实验中,比较了EOF和压力驱动流动方案之间的颗粒行为。此外,使用具有多个出口分支通道的微通道可以精确地分离微米级和亚微米级的颗粒,并分别收集,证明了该方案的高效率。

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