材料科学
蒸发冷却器
辐射冷却
涂层
复合材料
辐射传输
被动冷却
辐射冷却
多孔性
多孔介质
蒸发
水冷
传热
主动冷却
作者
Si-Wei Sun,Cheng Xue,Shuxin Zhang,Min Liu,Jie Zhao,Geng Li,Yan Zhang,Pan Feng,Yang-Hui Luo
出处
期刊:Nano Letters
[American Chemical Society]
日期:2026-03-14
标识
DOI:10.1021/acs.nanolett.5c05975
摘要
Addressing rising cooling demands driven by global warming, this study presents a zero-energy passive cooling strategy by synergistically integrating radiative and evaporative mechanisms. We developed a porous coating gel, PCp, composed of PVDF-HFP/CSH/PVDF, featuring high solar reflectivity (93.63%), high infrared emissivity (92.85%), and excellent hygroscopic capacity (1.80 g/g). This design enables daytime multieffect cooling by combining solar reflection, radiative heat dissipation, and evaporative cooling, while simultaneously harvesting atmospheric moisture at night. Benefiting from this synergy, the PCp coating achieves a subambient temperature reduction of up to 7.1 °C under simulated sunlight. This work offers a novel and efficient material solution for low-energy thermal building thermal management.
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