辐射传输
环境科学
工作(物理)
材料科学
储能
核工程
能量(信号处理)
温度调节
化学能
下降(电信)
Lift(数据挖掘)
功率(物理)
热能储存
辐射冷却
辐射能
相变材料
工程物理
辐射平衡
光电子学
气象学
高效能源利用
辐射热
物理
能源消耗
航空航天工程
大气科学
电气工程
辐射压力
消散
被动冷却
主动冷却
热力学
作者
Siqi Wang,Han Han,Ruxue Du,Yaoge Jing,Linxi Xu,Si Wu,Tingxian Li
标识
DOI:10.1021/acsenergylett.6c00059
摘要
Radiative cooling (RC) and radiative heating (RH) are emerging zero-carbon energy technologies that harvest cold from the universe and heat from sunlight, respectively. However, conventional RC and RH face long-standing challenges of seasonal mismatches between energy supply and cold/heat demand, low power density, and unstable energy harvesting. Herein, we demonstrate a self-adaptive radiative cooling/heating film (SRCHF) that synergistically integrates RC, RH, and energy storage for all-season thermoregulation. The SRCHF autonomously switches between RC and RH across seasons through temperature-responsive shape memory polymers, while phase change material-based energy storage enhances the cooling/heating power and mitigates their fluctuations by providing all-day cold/heat regulation. Notably, the SRCHF-based device achieves a subambient temperature drop of 8.2 °C in summer with a cooling power of 141 W m–2, and a temperature lift of 14 °C in winter with a heating power of 565 W m–2. This work offers a zero-carbon pathway for all-season smart thermoregulation.
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