辐射冷却
发射率
被动冷却
辐射传输
低发射率
环境科学
热辐射
辐射冷却
空调
辐射
红外线的
主动冷却
材料科学
核工程
工程物理
能源消耗
热的
高效能源利用
太阳增益
太阳能空调
辐射能
水冷
太阳能
红外窗口
电子设备和系统的热管理
自由冷却
热发射
机械工程
冷却能力
被动式太阳能建筑设计
空气冷却
作者
Chaoqun Ji,Biyu Li,Kaisheng Zeng,Yonghao Ni,Jianguo Li,Ruiying Zhang,Bin Chen
出处
期刊:Polymers
[Multidisciplinary Digital Publishing Institute]
日期:2026-02-28
卷期号:18 (5): 596-596
被引量:4
标识
DOI:10.3390/polym18050596
摘要
Radiative cooling technology, which leverages the emission of long-wave infrared radiation to deep space, offers a promising passive cooling solution that can reduce the energy consumption associated with conventional air conditioning systems. This technology is particularly relevant in tropical and subtropical regions, where buildings are exposed to high levels of solar radiation and excessive heat. Passive radiative cooling materials, such as petroleum-, inorganic- and cellulose-based materials, have shown significant potential in reducing building temperatures (more than 8 °C at daytime and 10 °C at nighttime) and enhancing energy efficiency by weakening the utilization of air conditioning. This review explores the development of promising radiative cooling materials, focusing on their raw materials, manufacturing, and key distinction (such as high solar reflectivity of >90% and middle-infrared band light emissivity of >0.9) for radiative cooling. Further, the progressive application of radiative cooling material in building and construction is significantly discussed, focusing on the cooling performance, mechanical properties, hydrophobicity and long-term stability. Lastly, future directions for advancing radiative cooling materials for building applications are presented, emphasizing the importance of integrating sustainability, up-scale manufacturing, and low cost with high thermal management performance.
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