润湿
材料科学
各向异性
磁铁
粘附
纳米技术
曲面(拓扑)
复合材料
机械工程
光学
几何学
数学
物理
工程类
作者
Moyuan Cao,Jin Xu,Yun Peng,Cunming Yu,Kan Li,Kesong Liu,Lei Jiang
标识
DOI:10.1002/adma.201606869
摘要
Here, a smart fluid‐controlled surface is designed, via the rational integration of the unique properties of three natural examples, i.e., the unidirectional wetting behaviors of butterfly's wing, liquid‐infused “slippery” surface of the pitcher plant, and the motile microcilia of micro‐organisms. Anisotropic wettability, lubricated surfaces, and magnetoresponsive microstructures are assembled into one unified system. The as‐prepared surface covered by tilted microcilia achieves significant unidirectional droplet adhesion and sliding. Regulating by external magnet field, the directionality of ferromagnetic microcilia can be synergistically switched, which facilitates a continuous and omnidirectional‐controllable water delivery. This work opens an avenue for applications of anisotropic wetting surfaces, such as complex‐flow distribution and liquid delivery, and extend the design approach of multi‐bioinspiration integration.
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