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A Microfluidic Chip for Liquid Metal Droplet Generation and Sorting

机译:用于液态金属液滴产生和分选的微流控芯片

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A liquid metal based microfluidic system was proposed and demonstrated for the generation and sorting of liquid metal droplets. This micro system utilized silicon oil as the continuous phase and Ga 66 In 20.5 Sn 13.5 (66.0 wt % Ga, 20.5 wt % In, 13.5 wt % Sn, melting point: 10.6 ???°C) as the dispersed phase to generate liquid metal droplets on a three-channel F-junction generator. The F-junction is an updated design similar to the classical T-junction, which has a special branch channel added to a T-junction for the supplement of 30 wt % aqueous NaOH solution. To perform active sorting of liquid metal droplets by dielectrophoresis (DEP), the micro system utilized liquid-metal-filled microchannels as noncontact electrodes to induce electrical fields through the droplet channel. The electrode channels were symmetrically located on both sides of the droplet channel in the same horizontal level. According to the results, the micro system can generate uniformly spherical liquid metal droplets, and control the flow direction of the liquid metal droplets. To better understand the control mechanism, a numerical simulation of the electrical field was performed in detail in this work.
机译:提出并提出了一种基于液态金属的微流体系统,用于液态金属液滴的产生和分选。该微系统利用硅油作为连续相,并用Ga 66 In 20.5 Sn 13.5(Ga 66.0 wt%,In 20.5 wt%,Sn 13.5 wt%,熔点:10.6℃)作为分散相,生成液体。三通道F结发生器上的金属滴。 F型接头是类似于经典T型接头的更新设计,后者在T型接头上添加了特殊的分支通道,以补充30 wt%的NaOH水溶液。为了通过介电电泳(DEP)进行液态金属液滴的主动分选,该微系统利用液态金属填充的微通道作为非接触电极来感应通过液滴通道的电场。电极通道在相同水平面上对称地位于液滴通道的两侧。根据结果​​,微系统可以产生均匀球形的液态金属液滴,并控制液态金属液滴的流动方向。为了更好地理解控制机制,在这项工作中对电场进行了数值模拟。

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