电润湿
数字微流体
微流控
动力学(音乐)
粘度
物理
航程(航空)
机械
纳米技术
电介质
材料科学
光电子学
声学
量子力学
复合材料
出处
期刊:Physical review
[American Physical Society]
日期:2022-06-27
卷期号:105 (6)
被引量:6
标识
DOI:10.1103/physreve.105.064609
摘要
Even though electrowetting-on-dielectric (EWOD) is a useful strategy in a wide array of biological and engineering processes with numerous droplet-manipulation applications, there is still a lack of complete theoretical interpretation on the dynamics of electrowetting. In this paper we present an effective theoretical model and use the Onsager variational principle to successfully derive general dynamic shape equations for electrowetting droplets in both the overdamped and underdamped regimes. It is found that the spreading and retraction dynamics of a droplet on EWOD substrates can be fairly well captured by our model, which agrees with previous experimental results very well in the overdamped regime. We also confirm that the transient dynamics of EW can be characterized by a timescale independent of liquid viscosity, droplet size, and applied voltage. Our model provides a complete fundamental explanation of EW-driven spreading dynamics, which is important for a wide range of applications, from self-cleaning to novel optical and digital microfluidic devices.
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