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首页> 外文期刊>Microfluidics and nanofluidics >Optimization of planar interdigitated microelectrode array for biofluid transport by AC electrothermal effect
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Optimization of planar interdigitated microelectrode array for biofluid transport by AC electrothermal effect

机译:交流电热效应优化平面指状微电极阵列用于生物流体传输

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摘要

Point-of-care (POC) diagnostics is one of the most important applications for microfluidic research. However, the development of microfluidic POC devices needs to overcome great obstacles to reach market. One challenge is to find a chip-scale pumping strategy that is of low cost, small size, and light weight. Because of their simple implementation, electrokinetic techniques have been extensively investigated as a promising candidate for realizing disposable pumps, with the majority of research effort focusing on direct current and alternating current (AC) electroosmosis. As POC applications often need to handle conductive biofluids with medium to high salt content, AC electrothermal (ACET) effect has been investigated recently for pumping of biofluids, albeit with less than desirable pumping performance. In order to achieve effective on-chip ACET micropumps, this paper presents one of the first efforts in optimizing ACET micropump design utilizing planar interdigitated electrodes. The effects of electrode dimensions on pumping rate were numerically studied using COMSOL Multiphysics and MATLAB, and an optimal ratio of electrode geometry was found for various pumping scenarios. The optimal geometry ratio was tested to be valid over a wide range of electrode characteristic lengths, AC signals, and fluid ionic strengths. Experimental validation of the simulation results was also conducted, and higher flow velocities over prior reports were consistently demonstrated by optimized electrode arrays.
机译:即时诊断(POC)诊断是微流研究最重要的应用之一。然而,微流体POC设备的开发需要克服进入市场的巨大障碍。一个挑战是找到一种低成本,小尺寸和轻量化的芯片级泵浦策略。由于其简单的实现方式,电动技术已被广泛研究为实现一次性泵的有前途的候选者,其中大部分研究工作集中在直流电和交流电(AC)渗透上。由于POC应用程序通常需要处理中至高盐含量的导电生物流体,因此,尽管生物泵的泵送性能不理想,但近来已经研究了交流电热(ACET)效应来泵送生物流体。为了实现有效的片上ACET微型泵,本文提出了利用平面叉指电极优化ACET微型泵设计的第一项努力。使用COMSOL Multiphysics和MATLAB数值研究了电极尺寸对抽气速率的影响,并找到了各种抽气方案的最佳电极几何比。测试了最佳几何比,在各种电极特征长度,交流信号和流体离子强度范围内均有效。还进行了模拟结果的实验​​验证,并且通过优化的电极阵列始终如一地证明了超过先前报告的更高流速。

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