润湿
材料科学
涂层
超疏水涂料
纳米结构
聚合物
接触角
疏水二氧化硅
表面粗糙度
表面光洁度
化学工程
生物污染
疏水
纳米技术
表面能
复合材料
化学
生物化学
膜
工程类
作者
Tingyi Liu,Chang‐Jin Kim
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2014-11-28
卷期号:346 (6213): 1096-1100
被引量:975
标识
DOI:10.1126/science.1254787
摘要
Superhydrophobic and superoleophobic surfaces have so far been made by roughening a hydrophobic material. However, no surfaces were able to repel extremely-low-energy liquids such as fluorinated solvents, which completely wet even the most hydrophobic material. We show how roughness alone, if made of a specific doubly reentrant structure that enables very low liquid-solid contact fraction, can render the surface of any material superrepellent. Starting from a completely wettable material (silica), we micro- and nanostructure its surface to make it superomniphobic and bounce off all available liquids, including perfluorohexane. The same superomniphobicity is further confirmed with identical surfaces of a metal and a polymer. Free of any hydrophobic coating, the superomniphobic silica surface also withstands temperatures over 1000°C and resists biofouling.
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