球体
曲率
曲率半径
半径
材料科学
粒子(生态学)
图层(电子)
粘附
复合材料
微球
纳米技术
几何学
物理
化学工程
平均曲率
计算机科学
数学
计算机安全
海洋学
流量平均曲率
天文
工程类
地质学
作者
Ming Ye,Xu Deng,Javed Ally,Periklis Papadopoulos,Frank Schellenberger,Doris Vollmer,Michael Kappl,Hans‐Jürgen Butt
标识
DOI:10.1103/physrevlett.112.016101
摘要
Water and oil repellent coatings---so-called superamphiphobic coatings---greatly reduce the interaction between a liquid and a solid. So far, only flat or weakly curved superhydrophobic and superamphiphobic surfaces have been designed. This raises the question of whether highly curved structures or microspheres are feasible. Therefore, we coated microspheres with a superamphiphobic layer and measured the force between the spheres and a liquid. A qualitatively different dependence of the adhesion force on the applied load for superamphiphobic and smooth spheres is detected. Furthermore, we demonstrate both experimentally and theoretically that superamphiphobicity fails below a critical particle radius, depending on topological details and type of liquid. Therefore, this study sets a fundamental physical limit to the application of superamphiphobic layers for small objects with high curvature.
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