首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Characterization of electrode alignment for optimal droplet charging and actuation in droplet-based microfluidic system
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Characterization of electrode alignment for optimal droplet charging and actuation in droplet-based microfluidic system

机译:基于液滴的微流体系统中最佳液滴充电和驱动的电极对准特性

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摘要

The actuation method using electric force as a driving force is utilized widely in droplet-based microfluidic systems. In this work, the effects of charging electrode alignment on direct charging of a droplet on electrified electrodes and a subsequent electrophoretic control of the droplet are investigated. The charging characteristics of a droplet according to different electrode alignments are quantitatively examined through experiments and systematic numerical simulations with varying distances and angles between the two electrodes. The droplet charge acquired from the electrified electrode is directly proportional to the distance and barely affected by the angle between the two electrodes. This implies that the primary consideration of electrode alignment in microfluidic devices is the distance between electrodes and the insignificant effect of angle provides a great degree of freedom in designing such devices. Not only the droplet charge acquired from the electrode but also the force exerted on the droplet is analyzed. Finally, the implications and design guidance for microfluidic systems are discussed with an electrophoresis of a charged droplet method-based digital microfluidic device.
机译:在基于液滴的微流体系统中,广泛使用利用电力作为驱动力的致动方法。在这项工作中,研究了带电电极对准对带电电极上的液滴直接充电以及液滴的后续电泳控制的影响。通过实验和系统的数值模拟,在两个电极之间的距离和角度都不同的情况下,对根据不同电极排列方式的液滴的充电特性进行了定量检查。从带电电极获取的液滴电荷与距离成正比,并且几乎不受两个电极之间角度的影响。这意味着在微流体装置中电极对准的主要考虑因素是电极之间的距离,角度的微不足道的影响在设计此类装置时提供了很大的自由度。不仅分析了从电极获得的液滴电荷,还分析了施加在液滴上的力。最后,通过基于带电液滴法的数字微流体装置的电泳讨论了微流体系统的含义和设计指南。

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