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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Electrowetting-Dominated Instability of Cassie Droplets on Superlyophobic Pillared Surfaces
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Electrowetting-Dominated Instability of Cassie Droplets on Superlyophobic Pillared Surfaces

机译:高层柱柱表面上的卡西液滴的电润湿稳定性

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摘要

The liquid-air interface of Cassie droplets on superhydrophobic/superlyophobic surfaces has been directly captured with a high-precision laser displacement meter. The measured profile of the interface shape and the critical voltage with which the Cassie-to-Wenzel transition occurs are compared against those from numerical simulations of the electric field coupled with the interface shape. Under the applied voltage, the collapsing behavior of water, glycerol, and hexadecane droplets on SU-8, CYTOP, and overhanging Si/SiO2 pillars has been uniquely identified depending on the liquid properties, the pillar geometry, and the pillar material. It is shown that, with increasing voltage, the contact angle at the three-phase contact line approaches the maximum advancing angle along the pillar sidewalls, above which the depinning from the pillar edge leads to a slide-down motion. The slide-down instability is dominant over the pull-in instability both on dielectric pillars and conductive overhanging pillars examined in the present study. It is indicated that the collapsing behavior on the present overhanging pillars is closely related to contact angle saturation in electrowetting and stick-slip motion of the contact line.
机译:卡西的液体 - 空气界面上的液滴超疏水性/ superlyophobic表面已经与一个高精度的激光位移计直接捕获。的界面的形状和与该卡西到策尔转变发生的临界电压的测量轮廓是对那些从加上界面形状的电场的数值模拟进行比较。下所施加的电压,的水,甘油,和十六烷的液滴上的SU-8,CYTOP,和悬垂硅/二氧化硅柱压扁行为已被唯一地依赖于液体的特性,支柱几何形状和支柱的材料识别。结果表明,随着电压的增加,在所述三相接触线的接触角沿柱的侧壁,接近最大前进角高于其从支柱边缘的引线滑盖向下运动的去钉栓。滑动向下的不稳定是在本研究拉入两对电介质柱子和导电悬垂支柱不稳定检测主导。这表明,在本悬垂支柱折叠行为是密切相关的接触角饱和电润湿和接触线的粘滑运动。

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