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Electrokinetic Phenomena in Pencil Lead-Based Microfluidics

机译:铅笔铅基微流控中的电动现象

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摘要

Fabrication of microchannels and associated electrodes to generate electrokinetic phenomena often involves costly materials and considerable effort. In this study, we used graphite pencil-leads as low cost, disposable 3D electrodes to investigate various electrokinetic phenomena in straight cylindrical microchannels, which were themselves fabricated by using a graphite rod as the microchannel mold. Individual pencil-leads were employed as the micro-electrodes arranged along the side walls of the microchannel. Efficient electrokinetic phenomena provided by the 3D electrodes, including alternating current electroosmosis (ACEO), induced-charge electroosmosis (ICEO), and dielectrophoresis (DEP), were demonstrated by the introduced pencil-lead based microfluidic devices. The electrokinetic phenomena were characterized by micro-particle image velocimetry (micro-PIV) measurements and microscopy imaging. Highly efficient electrokinetic phenomena using 3D pencil-lead electrodes showed the affordability and ease of this technique to fabricate microfluidic devices embedded with electrodes for electrokinetic fluid and particle manipulations.
机译:制造微通道和相关电极以产生电动现象的过程通常涉及昂贵的材料和大量的工作。在这项研究中,我们使用石墨笔芯作为低成本的一次性3D电极来研究直圆柱微通道中的各种电动现象,而直圆柱微通道本身是使用石墨棒作为微通道模具制造的。使用单独的铅笔芯作为沿着微通道的侧壁布置的微电极。引入的基于铅笔铅的微流控设备演示了3D电极提供的高效电动现象,包括交流电渗(ACEO),感应电荷电渗(ICEO)和介电电泳(DEP)。通过微粒图像测速(micro-PIV)测量和显微镜成像来表征电动现象。使用3D铅笔芯电极的高效电动现象显示了这种技术的可承受性和易用性,该技术可制造嵌入电极的微流体设备,用于电动流体和颗粒处理。

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