材料科学
光电子学
光伏系统
涂层
辐射冷却
光学
防反射涂料
辐射传输
图层(电子)
发射率
太阳能电池
纳米技术
物理
气象学
生态学
生物
作者
Yi Xu,Jizu Lyu,Linsong Gao,Hongsheng Liu,Ningxia Yin,Yubai Li
标识
DOI:10.1002/ente.202300372
摘要
Recent research on combining photovoltaic (PV) modules with radiative sky cooling (RSC) technology has elicited much interest. Such cross‐disciplinary technology coupling provides a feasible approach to solar cells’ nighttime applications. However, current commonly used radiative sky cooling materials’ (RSCMs) conflict with the solar light harvesting and utilizing of PV module. The spectral selectivity characteristics of the strong transmission in the solar spectrum range (0.3–1.1 μm) and the enough emissivity within the atmosphere transparency window (8–13 μm) are the essential to develop the PV module‐usable RSC coating. Herein, antireflection (AR) structure optimize method and RSC coating design method are proposed to achieve nighttime RSC capacity with high solar radiation transmission property via the RSCM selection and light management, in the visible, near‐infrared, and midinfrared wavelength range, originating from the subwavelength optical effects of bioinspired AR design. A kind of double‐layer coating consisting of the PDMS substrate layer and SiO 2 close‐packed hexagonal rotating parabolic body‐bioinspired moth‐eye structure cover layer is designed in this research. The coating has 0.997 average transmissivity characteristic in solar spectrum and can lower the PV cell temperature over 10.5 K than ambient at night.
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