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首页> 外文期刊>Microfluidics and nanofluidics >Particle handling in straight microfluidic channels via opposing electroosmotic and pressure-driven flows
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Particle handling in straight microfluidic channels via opposing electroosmotic and pressure-driven flows

机译:通过相反的电渗流和压力驱动流在直的微流体通道中进行颗粒处理

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The current study presents a method for producing recirculation zones in a straight microchannel using opposing pressure-driven and electrokinetically driven flows. The interaction of these two flow streams causes flow recirculation structures, which restricts the flow passage within the microchannel and causes a nozzle-like effect, thereby increasing the separation distance between particles in the fluid stream. Theoretical and experimental investigations are performed to investigate the effects of the applied electrical field intensity on the flow recirculation size, and the nozzle-like effect, respectively. In general, the results confirm that the proposed approach provides an effective means of achieving particle acceleration and separation distance within straight microchannels, and therefore provides a viable technique for improving particle manipulation and optical detection in conventional microfluidic devices.
机译:当前的研究提出了一种使用相对的压力驱动和电动驱动的流动在直的微通道中产生再循环区域的方法。这两种流的相互作用导致流再循环结构,该流再循环结构限制了微通道内的流通道并产生喷嘴状效果,从而增加了流体流中颗粒之间的分离距离。进行理论和实验研究以分别研究施加的电场强度对流动再循环尺寸的影响和喷嘴状的影响。通常,结果证实了所提出的方法提供了在直的微通道内实现粒子加速和分离距离的有效手段,因此提供了一种可行的技术,用于改善常规微流体装置中的粒子操纵和光学检测。

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