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Multiscale Interface Effect on Homogeneous Dielectric Structure of ZrO2/Teflon Nanocomposite for Electrowetting Application

机译:多尺度界面效应对ZrO2 / Teflon纳米复合材料均相介电结构的影响

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摘要

Electrowetting-on-dielectric is a preferred option in practical applications of the electrowetting phenomenon but limited by dielectric and breakdown performances of the dielectric layer. In the present work, a ceramic/polymer nanocomposite as a novel dielectric layer is developed to intensify the overall electrowetting performances by multiscale interface effect. Hereinto, surface fluoro-modified ZrO2 nanoparticles (mZrO2) are dispersed well in AF 1600 matrix to form a mZrO2@AF 1600 nanocomposite. The small addition of mZrO2 improves the dielectric constant of the nanocomposite, and the experimental value is larger than the theoretical value calculated by Maxwell–Garnett model, but fits well with the Rahaman–Khastgir model. The molecular dynamics simulations with the explicit model further verify the interfacial effect. Meanwhile, double contact angle modulation and higher breakdown field strength (Eb) are obtained. For the three-layer sandwich structure, both the top and bottom AF 1600 layer decrease the surface roughness for better electrowetting reproducibility and wider wettability modulation. The Forlani–Minnaja theory related to the empirical relationship between Eb and thickness of dielectric layer fit well with the monolayer structure, but cannot be applied in multi-layer structures. A new relationship is proposed to guide the design of dielectric multi-layers with high breakdown field strength.
机译:在电润湿现象的实际应用中,电介质上电润湿是优选的选择,但是受到电介质层的电介质和击穿性能的限制。在当前的工作中,陶瓷/聚合物纳米复合材料作为新型介电层被开发出来,以通过多尺度界面效应增强整体电润湿性能。在此,将表面氟改性的ZrO 2纳米颗粒(mZrO 2)很好地分散在AF 1600基质中以形成mZrO 2 @AF 1600纳米复合材料。少量添加mZrO2可以提高纳米复合材料的介电常数,并且实验值大于Maxwell–Garnett模型计算的理论值,但与Rahaman–Khastgir模型非常吻合。用显式模型进行的分子动力学模拟进一步验证了界面效应。同时,获得了双接触角调制和更高的击穿场强(Eb)。对于三层夹层结构,顶层和底层AF 1600层均会降低表面粗糙度,从而实现更好的电润湿重现性和更广泛的润湿性调制。与Eb和介电层厚度之间的经验关系有关的Forlani-Minnaja理论与单层结构非常吻合,但不能应用于多层结构。提出了一种新的关系来指导具有高击穿场强的介电多层的设计。

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