热发射率
材料科学
辐射传输
透射率
辐射冷却
光电子学
光学
计算机科学
物理
气象学
梁(结构)
作者
Xinping Zhang,Ziming Cheng,Yang Dongling,Yan Dong,Xuhang Shi,Huaxu Liang,Fuqiang Wang,Han Han,Weifeng Meng,Yong Shuai,Yuying Yan
出处
期刊:ACS Photonics
[American Chemical Society]
日期:2023-04-17
卷期号:10 (5): 1624-1632
被引量:36
标识
DOI:10.1021/acsphotonics.3c00241
摘要
Passive daytime radiative cooling (PDRC) provides a zero-energy cooling technology to reduce the global fossil energy consumption and has already attracted tremendous interest. However, breaking the trade-off between the pursuit of ultrahigh dual-band (solar and atmospheric window) optical properties and the compatibility of multiple functional requirements by application is still a big challenge for PDRC. By introducing the photon slab-porous effect with strong sunlight backward scattering and inspired by human skin (epidermis and dermis) with recorded medical infrared emittance and multi-functions, we proposed an efficient dual-band optical property design strategy for PDRC. Through a simple and scalable dip dyeing process, the fabricated bio-skin-inspired PDRC metafabric exhibited superior dual-band optical properties, while both the solar reflectance and atmospheric window emittance can reach 97%. Outdoor tests demonstrated that the bio-PDRC metafabric achieved a maximum sub-ambient temperature drop of 12.6 °C in daytime. A human wearing a hat made of bio-PDRC metafabric can be 16.6 °C cooler than the one wearing a common hat. The bio-PDRC metafabric also exhibited superior performance of breathability, waterproofness, flexibility, strength, and durability to fulfill the multiple demands of personal thermal management, vents, and car covers.
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