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光电润湿液滴输运机制的研究。

Investigation into the optoelectrowetting droplet transport mechanism.

机构信息

School of Mechanical and Electrical Engineering, Hainan University, Haikou, Hainan, P. R. China.

School of Information and Communication Engineering, Hainan University, Haikou, Hainan, P. R. China.

出版信息

Electrophoresis. 2024 Aug;45(15-16):1428-1442. doi: 10.1002/elps.202300296. Epub 2024 Mar 2.

Abstract

To explore the optoelectronic wetting droplet transport mechanism, a transient numerical model of optoelectrowetting (OEW) under the coupling of flow and electric fields is established. The study investigates the impact of externally applied voltage, dielectric constant of the dielectric layer, and interfacial tension between the two phases on the dynamic behavior of droplets during transport. The proposed model employs an improved Young's equation to calculate the instantaneous voltage and contact angle of the droplet on the dielectric layer. Results indicate that, under the influence of OEW, significant variations in the interface contact angle of droplets occur in bright and dark regions, inducing droplet movement. Moreover, the dynamic behavior of droplet transport is closely associated with various parameters, including externally applied voltage, dielectric layer material, and interfacial tension between the two phases, all of which impact the contact angle and, consequently, the transport process. By summarizing the influence patterns of the three key parameters studied, the optimization of droplet transport performance is achieved. The study employs two-dimensional simulation models to emulate the droplet motion under the influence of the electric field, investigating the OEW droplet transport mechanism. The continuous movement of droplets involves three stages: initial wetting, continuous transport, and reaching a steady position. The findings contribute theoretical support for the efficient design of digital microfluidic devices for OEW droplet movement and the selection of key parameters for droplet manipulation.

摘要

为了探索光电润湿(OEW)液滴输运机制,建立了一个流固电耦合作用下的瞬态光电润湿数值模型。该研究考察了外加电压、介电层介电常数和两相间界面张力对输运过程中液滴动态行为的影响。所提出的模型采用改进的杨氏方程来计算介电层上液滴的瞬时电压和接触角。结果表明,在 OEW 的影响下,液滴在亮区和暗区的界面接触角发生显著变化,导致液滴运动。此外,液滴输运的动态行为与各种参数密切相关,包括外加电压、介电层材料和两相间界面张力,这些参数均会影响接触角,从而影响输运过程。通过总结研究的三个关键参数的影响模式,实现了液滴输运性能的优化。该研究采用二维模拟模型来模拟电场作用下液滴的运动,研究 OEW 液滴输运机制。液滴的连续运动涉及三个阶段:初始润湿、连续输运和达到稳定位置。研究结果为高效设计用于 OEW 液滴运动的数字微流控器件和选择液滴操纵的关键参数提供了理论支持。

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