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Traveling-wave electrokinetic micropumps: velocity, electrical current, and impedance measurements

机译:行波电动微泵:速度,电流和阻抗测量

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摘要

An array of microelectrodes covered in an electrolyte and energized by a traveling-wave potential produces net movement of the fluid. Arrays of platinum microelectrodes of two different characteristic sizes have been studied. For both sizes of arrays, at low voltages (2 V-pp) the electrolyte flow is in qualitative agreement with the linear theory of ac electroosmosis. At voltages above a threshold, the direction of fluid flow is reversed. The electrical impedance of the electrode - electrolyte system was measured after the experiments, and changes in the electrical properties of the electrolyte were observed. Measurements of the electrical current during pumping of the electrolyte are also reported. Transient behaviors in both electrical current and fluid velocity were observed. The Faradaic currents probably generate conductivity gradients in the liquid bulk, which in turn give rise to electrical forces. These effects are discussed in relation to the fluid flow observations.
机译:覆盖在电解质中并由行波电势激励的微电极阵列会产生流体的净运动。已经研究了两种不同特征尺寸的铂微电极阵列。对于两种尺寸的阵列,在低电压(<2 V-pp)时,电解质流与ac电渗线性理论基本相符。在高于阈值的电压下,流体流动的方向相反。实验后测量电极-电解质系统的电阻抗,并观察到电解质的电性能的变化。还报道了在泵送电解质期间的电流测量。观察到电流和流体速度的瞬态行为。法拉第电流很可能在液体中产生电导率梯度,这反过来会引起电势。这些影响是关于流体流动的观察结果而讨论的。

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