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Pumping of liquids with ac voltages applied to asymmetric pairs of microelectrodes

机译:通过施加到不对称微电极的交流电压泵送液体

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摘要

The net flow of electrolyte induced by an ac electric potential applied to an array of asymmetric pairs of microelectrodes has recently been reported. The interaction between the oscillating electric field and the oscillating induced charge at the diffuse double layer on the electrodes results in a steady electro-osmotic velocity distribution on top of the electrodes. This slip velocity distribution is anisotropic and produces a net flow of fluid. This paper presents a theoretical analysis of the pumping phenomena based upon an electro osmotic model in ac fields. The electrical equations are solved numerically using the charge simulation method. The bulk flow generated by the electro-osmotic slip velocity is calculated. The dependence of the fluid flow on voltage and frequency is described and compared to experiments
机译:最近已经报道了由交流电势感应的电解质的净流量,该交流电势施加到不对称的微电极对阵列上。电极上的扩散双层处的振荡电场和振荡感应电荷之间的相互作用导致电极顶部的电渗速度分布稳定。该滑移速度分布是各向异性的,并产生流体的净流量。本文基于交流场中的电渗模型,对泵浦现象进行了理论分析。使用电荷模拟方法对电方程进行数值求解。计算由电渗滑移速度产生的总流量。描述了流体流量对电压和频率的依赖性,并与实验进行了比较

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