材料科学
表面张力
涂层
纳米-
透射率
纳米技术
透明度(行为)
光学透明度
表面粗糙度
复合材料
光电子学
政治学
量子力学
物理
法学
作者
Haojun Li,Qingqing Jin,Haibo Li,Hua Tong,Keke Wang,Shuoran Chen,Gangfeng Ouyang,Zuankai Wang,Yanan Li
标识
DOI:10.1002/adfm.202309684
摘要
Abstract Developing transparent and superamphiphobic materials that can repel low‐surface‐tension liquids is attractive for fundamental research and industrial applications. Despite great progress, it remains a daunting challenge to scalably fabricate highly transparent superamphiphobic materials because of the inherent paradox in surface roughness to achieve superamphiphobicity and optical transparency. Herein, a scalable template‐assisted spray coating method is developed to form hierarchical nano re‐entrant structures that eliminate the visible‐light scattering while maintaining optical transmittance above 88% in the visible region, besides retaining the superamphiphobicity to various low surface‐tension liquids. In addition to exhibiting improved mechanical, chemical, and thermal stabilities, these transparent superamphiphobic materials can also be applied on various substrates, including curved surfaces and solar panels, to enhance their optical stability. This study believes that these excellent overall properties possess enormous potential for various applications involving self‐cleaning, anti‐fouling, and anti‐counterfeiting.
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