材料科学
六氟丙烯
阻燃剂
氟化物
复合数
白天
铝
辐射冷却
磷酸盐
复合材料
氟碳化合物
薄膜
化学工程
纳米技术
无机化学
四氟乙烯
有机化学
聚合物
气象学
化学
物理
大气科学
工程类
共聚物
地质学
作者
Yuanyuan Zhu,Chao‐Hua Xue,Bing‐Ying Liu,Xiao-Jing Guo,Yuanyuan Qu,Huidi Wang,Chao‐Qun Ma,Meng-Chen Huang,Jun Cheng
标识
DOI:10.1021/acsami.5c01292
摘要
Radiative cooling technology has major benefits for energy-free thermoregulation since it can chill items without using any energy. However, the cooling efficacy of radiative cooling materials is hampered by outdoor pollution as well as a number of safety issues involved in practical applications, in particular, the fire hazard of polymer-based materials. Here, a porous composite film was created and manufactured that is flame-retardant, radiative cooling, and superhydrophobic. The average infrared emissivity of the film reached 97.2% with an average solar reflectance up to 98.4%. It produced subambient cooling in an outdoor environment, with an average temperature decrease of 11.5 °C. With a sliding angle of 3.6° and a water contact angle of 158.7°, the surface of the film exhibits conventional self-cleaning properties and is superhydrophobic. Notably, the film is flame-retardant with a limiting oxygen index of 38.3%, which is suitable for cooling materials with fire safety requirements.
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