材料科学
微尺度化学
结冰
粘附
霜冻(温度)
成核
过饱和度
复合材料
纳米技术
冰晶
冰的形成
冰核
纳米-
光学
气象学
化学
有机化学
数学教育
地质学
物理
大气科学
数学
作者
Srinivas Bengaluru Subramanyam,Vitaliy Kondrashov,Jürgen Rühe,Kripa K. Varanasi
标识
DOI:10.1021/acsami.6b01133
摘要
Ice adhesion on superhydrophobic surfaces can significantly increase in humid environments because of frost nucleation within the textures. Here, we studied frost formation and ice adhesion on superhydrophobic surfaces with various surface morphologies using direct microscale imaging combined with macroscale adhesion tests. Whereas ice adhesion increases on microtextured surfaces, a 15-fold decrease is observed on nanotextured surfaces. This reduction is because of the inhibition of frost formation within the nanofeatures and the stabilization of vapor pockets. Such "Cassie ice"-promoting textures can be used in the design of anti-icing surfaces.
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