材料科学
三元运算
结冰
光热治疗
极寒
复合材料
纳米技术
气象学
计算机科学
气候学
物理
地质学
程序设计语言
作者
Shiyu Xu,Xiaobin Huang,Haoqiang Sheng,Xiangzhao Wang,Wenbin Hu,Zemin Ji,Hong Liu
标识
DOI:10.1002/adfm.202505439
摘要
Abstract In extreme cold and dynamic environments, active and passive ice‐phobic coatings face performance degradation due to surface issues and low photoelectric‐thermal conversion. Photothermal solid‐like slippery ice‐phobic coating (PSSC) is developed using the “yin‐yang associative elements” idea. By combining low‐thermal‐conductivity microspheres, nano‐porous aerogels, silicone oil, and epoxy, PSSC forms a micro‐nano‐nano light‐trapping structure and a slippery surface. It has a 2.6° water sliding angle, 9.2 kPa ice adhesion, and an icing delay 79.5 times that of bare aluminium (Al). Moreover, PSSC also exhibits excellent corrosion resistance and environmental durability. After 30 days of ultraviolet (UV) irradiation and saltwater immersion, the sliding angle increases minimally. Its structure boosts photothermal performance, heating 148 °C in 20 s under 1 sun irradiation. At –20 °C, it melts ice fast with 1 sun irradiation. Notably, at –20 °C, 80% Relative Humidity (RH), in an 80 rpm min −1 dynamic photothermal defrosting test, PSSC defrosts in 180 s. The PSSC can achieve rapid ice removal within 180 s at −30 °C. PSSC's excellent ice‐phobic ability in extreme cold environments offers new thoughts for advanced coating development.
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