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A novel actuation method of transporting droplets by using electrical charging of droplet in a dielectric fluid

机译:通过使用介电液中的液滴电荷来传输液滴的新型驱动方法

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摘要

We evaluate the feasibility of manipulating droplets in two dimensions by exploiting Coulombic forces acting on conductive droplets immersed in a dielectric fluid. When a droplet suspended in an immiscible fluid is located near an electrode under a dc voltage, the droplet can be charged by direct contact, by charge transfer along an electrically conducting path, or by both mechanisms. This process is called electrical charging of droplet (ECOD). This charged droplet may then be transported rapidly by exploiting Coulombic forces. We experimentally demonstrate electrical actuation of a charged droplet by applying voltage sequences. A charged droplet is two dimensionally actuated by following the direction of the electrical field signal. The droplet does not contact the surface of the microfluidic chip when it moves. This characteristic is very advantageous because treatments of the substrate surfaces of microfluidic chip become simpler. In order to test the feasibility of using ECOD in a droplet-based microreactor, electrocoalescence of two oppositely charged droplets is also studied. When two droplets approach each other due to Coulombic attraction, a liquid bridge is formed between them. We postulate that if the applied electric field is weaker than a certain critical level, the two droplets coalesce instantaneously when the charges are exchanged and redistributed through this liquid bridge.
机译:我们通过利用作用在浸没在介电液中的导电液滴上的库仑力来评估二维操纵液滴的可行性。当悬浮在不混溶流体中的液滴在直流电压下位于电极附近时,可以通过直接接触,通过沿导电路径的电荷转移或通过两种机制对液滴充电。此过程称为液滴充电(ECOD)。然后可以通过利用库仑力快速输送带电液滴。我们通过施加电压序列实验性地证明了带电液滴的电驱动。通过遵循电场信号的方向,二维驱动带电液滴。液滴在移动时不与微流控芯片的表面接触。该特性是非常有利的,因为微流体芯片的衬底表面的处理变得更简单。为了测试在基于液滴的微反应器中使用ECOD的可行性,还研究了两个带相反电荷的液滴的电聚结现象。当两个液滴由于库仑吸引而彼此靠近时,它们之间会形成液桥。我们假设,如果施加的电场弱于某个临界水平,则当电荷通过该液桥交换和重新分布时,两个液滴会瞬间聚结。

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