辐射冷却
材料科学
辐射传输
光电子学
纳米颗粒
基质(水族馆)
红外窗口
发射率
光学
化学工程
纳米技术
红外线的
气象学
物理
工程类
海洋学
地质学
作者
Yuting Liu,Soomin Son,Dongwoo Chae,Pil-Hoon Jung,Heon Lee
标识
DOI:10.1016/j.solmat.2020.110561
摘要
Passive daytime radiative cooling plays a significant role in various cooling operations, which helps reducing electricity consumption and decreasing electricity demand. This work presents a new double-layered radiative cooling structure composed of a transparent dipentaerythritol penta-hexa-acrylate (DPHA) top layer, modified using Al2O3 nanoparticles (NPs) as resonators, and a metallic Ag bottom layer ([email protected]2O3 NPs/Ag). The [email protected]2O3 NPs layer is prepared through a fast photopolymerization process. The prepared [email protected]2O3 NPs/Ag system exhibits a solar reflectivity of 0.9465 and long-wave infrared (the so-called atmospheric transparency window) emissivity of 0.9163. The computed radiative cooling power at 27 °C can reach up to 106.43 W m−2. A subambient temperature drop of 10.35 °C is measured from 13:00 to 16:00 p.m. in Seoul, Korea, when using the proposed material as radiative cooler. Since this structure can be applied on flexible substrate, this has far-reaching implications for future applications in wearable devices.
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