电润湿
润湿
拉普拉斯压力
材料科学
润湿转变
接触角
复合数
电极
表面能
纳米技术
凝聚态物理
复合材料
机械
光电子学
物理
表面张力
电介质
量子力学
作者
G. Manukyan,Jung Min Oh,Dirk van den Ende,Rob G. H. Lammertink,Frieder Mugele
标识
DOI:10.1103/physrevlett.106.014501
摘要
We demonstrate that the equilibrium shape of the composite interface between superhydrophobic surfaces and drops in the superhydrophobic Cassie state under electrowetting is determined by the balance of the Maxwell stress and the Laplace pressure. Energy barriers due to pinning of contact lines at the edges of the hydrophobic pillars control the transition from the Cassie to the Wenzel state. Barriers due to the narrow gap between adjacent pillars control the lateral propagation of the Wenzel state. We demonstrate how reversible switching between the two wetting states can be achieved locally using suitable surface and electrode geometries.
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