Electrical Actuation-Induced Droplet Transport on Smooth and Superhydrophobic Surfaces

V. Bahadur, S. Garimella
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引用次数: 10

Abstract

Electrical control of liquid droplet motion and wettability has wide-ranging applications in the field of MEMS, lab-on-a-chip devices and surface engineering, in view of the resulting enhanced flow control opportunities, low power consumption and the absence of mechanical moving parts. This article summarizes recent progress towards understanding of the fundamentals underlying electrical actuation of droplets on smooth and superhydrophobic surfaces. Electrical actuation of liquid droplets with widely differing electrical properties on smooth surfaces is first discussed. Electromechanical considerations are employed to study the actuation force on a generic liquid droplet across the entire spectrum of electrical actuation regimes. The challenges in understanding the fluid flow and dissipation mechanisms associated with a discrete moving droplet are discussed. The role of electrical voltages, interfacial energies and surface morphology in determining droplet states (nonwetting Cassie state and wetting Wenze...
光滑和超疏水表面上电驱动诱导的液滴传输
液滴运动和润湿性的电气控制在MEMS、片上实验室设备和表面工程领域有着广泛的应用,因为由此增加了流量控制的机会,低功耗和没有机械运动部件。这篇文章总结了最近在理解在光滑和超疏水表面上电致动液滴的基本原理方面的进展。首先讨论了光滑表面上电学性质差别很大的液滴的电致动。采用机电因素来研究通用液滴在整个电致动范围内的致动力。在理解流体流动和耗散机制相关的离散运动液滴的挑战进行了讨论。研究了电压、界面能和表面形貌对液滴非润湿Cassie态和润湿Wenze态的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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