化学
莲花效应
表面光洁度
微晶
二芳基乙烯
下降(电信)
莲花
表面粗糙度
分形
光学
结晶学
复合材料
光致变色
光化学
材料科学
植物
有机化学
原材料
电信
数学分析
数学
物理
计算机科学
生物
作者
Ryo Nishimura,Kengo Hyodo,Haruna Sawaguchi,Yoshiaki Yamamoto,Yoshimune Nonomura,Hiroyuki Mayama,Satoshi Yokojima,Shinichiro Nakamura,Kingo Uchida
摘要
Double roughness structure, the origin of the lotus effect of natural lotus leaf, was successfully reproduced on a diarylethene microcrystalline surface. Static superwater-repellency and dynamic water-drop-bouncing were observed on the surface, in the manner of natural lotus leaves. Double roughness structure was essential for water-drop-bouncing. This ability was not observed on a single roughness microcrystalline surface showing the lotus effect of the same diarylethene derivative. The double roughness structure was reversibly controlled by alternating irradiation with UV and visible light.
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