Lee Taewoo, Park Sung-Yong
Department of Mechanical Engineering, National University of Singapore, 9 Engineering Drive 1, Singapore 117576, Singapore.
Department of Mechanical Engineering, San Diego State University, 5500 Campanile Drive, San Diego, CA 92182, USA.
Micromachines (Basel). 2021 Mar 18;12(3):320. doi: 10.3390/mi12030320.
We present experimental studies of alternating current (AC) electrowetting dominantly influenced by several unique characteristics of an ion gel dielectric in its capacitance. At a high-frequency region above 1 kHz, the droplet undergoes the contact angle modification. Due to its high-capacitance characteristic, the ion gel allows the contact angle change as large as Δ = 26.4°, more than 2-fold improvement, compared to conventional dielectrics when = 1 kHz. At the frequency range from 1 to 15 kHz, the capacitive response of the gel layer dominates and results in a nominal variation in the angle change as ≈ 90.9°. Above 15 kHz, such a capacitive response of the gel layer sharply decreases and leads to the drastic increase in the contact angle. At a low-frequency region below a few hundred Hz, the droplet's oscillation relying on the AC frequency applied was mainly observed and oscillation performance was maximized at corresponding resonance frequencies. With the high-capacitance feature, the ion gel significantly enlarges the oscillation performance by 73.8% at the 1st resonance mode. The study herein on the ion gel dielectric will help for various AC electrowetting applications with the benefits of mixing enhancement, large contact angle modification, and frequency-independent control.
我们展示了由离子凝胶电介质电容的几个独特特性主导的交流(AC)电润湿的实验研究。在高于1kHz的高频区域,液滴会发生接触角变化。由于其高电容特性,离子凝胶允许接触角变化高达Δ = 26.4°,与传统电介质相比,当 = 1kHz时,改善超过2倍。在1至15kHz的频率范围内,凝胶层的电容响应占主导地位,并导致角度变化的名义变化约为≈ 90.9°。高于15kHz时,凝胶层的这种电容响应急剧下降,并导致接触角急剧增加。在几百Hz以下的低频区域,主要观察到液滴依赖于所施加交流频率的振荡,并且在相应的共振频率下振荡性能最大化。凭借高电容特性,离子凝胶在第一共振模式下将振荡性能显著提高了73.8%。本文对离子凝胶电介质的研究将有助于各种交流电润湿应用,具有混合增强、大接触角变化和频率无关控制等优点。