材料科学
辐射冷却
被动冷却
被动式太阳能建筑设计
蒸发
热发射率
消散
胶粘剂
冷冻机
复合材料
热管
基质(水族馆)
电子设备和系统的热管理
冷负荷
光学
热的
热力学
传热
机械工程
空调
物理
图层(电子)
工程类
梁(结构)
海洋学
地质学
作者
Qin Ye,D. D. Chen,Ziying Zhao,Hongjie Yan,Meijie Chen
出处
期刊:Small
[Wiley]
日期:2025-03-10
标识
DOI:10.1002/smll.202412221
摘要
Passive cooling technologies have shown great interest recently due to their free electricity, especially for radiative cooling (RC), and evaporation cooling (EC). While single-mode passive cooling is often limited by environmental conditions, such as sunlight, clouds, and humidity, resulting in a limited cooling performance. To address these issues, an adhesive hydrogel paint is designed for passive heat dissipation in the daytime or high workload via radiative coupled evaporation cooling (REC), which also can realize water self-replenishment at night or low workload by RC-assisted adsorption for moisture capture. Solar reflectance R¯solar${{\bar{R}}_{{\mathrm{solar}}}}$ = 0.91 and thermal emittance ε¯LWIR${{\bar{\varepsilon }}_{{\mathrm{LWIR}}}}$ = 0.94 are obtained for RC. Excellent passive heat dissipation performance can be achieved by painting it on the 3D W-shaped substrate. Compared with the flat RC paint, the REC paint on a W-shape substrate achieves a temperature drop of 5.4 °C at the heating density of 100 W m-2, which is further increased to 11.4 °C at 400 W m-2 due to multi-passive cooling strategies. This structural and material design provides a potential adhesive hydrogel paint for outdoor passive heat dissipation.
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