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用于高效日间亚环境辐射冷却的结构多孔陶瓷。

Structural Porous Ceramic for Efficient Daytime Subambient Radiative Cooling.

作者信息

Zhao Jieyan, Meng Qing, Li Yong, Yang Zengchao, Li Jiangtao

机构信息

Key Laboratory of Cryogenics, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing 100190, China.

University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

ACS Appl Mater Interfaces. 2023 Oct 11;15(40):47286-47293. doi: 10.1021/acsami.3c10772. Epub 2023 Sep 26.

Abstract

Radiative cooling enables the passive cooling of buildings without energy input. Structural radiative cooling materials, such as cellulose-based composites, have recently received extensive attention due to their exceptional mechanical properties and spectral selectivity. However, the cellulose-based materials face challenges in durability and flame resistance, which limits their practical application. Herein, a structural porous SiN-BN ceramic with a high solar reflectivity of ∼0.95 and an atmospheric window emissivity of ∼0.95 was prepared by one-step combustion synthesis. The porous ceramic achieves a subambient radiative cooling performance of 5.14 °C under direct sunlight and theoretically yields a cooling power of 78.55 W m. The network structure of SiN crystals leads to a flexural strength of 31.07 MPa and a compressive strength of 65.36 MPa. The porous SiN-BN ceramics with excellent radiative cooling performance, mechanical properties, and thermal insulation exhibit wide application prospects in building cooling, especially in the harsh environment of tropical desert and island regions.

摘要

辐射冷却能够在无需能量输入的情况下实现建筑物的被动冷却。基于纤维素的复合材料等结构辐射冷却材料,因其优异的机械性能和光谱选择性,近来受到了广泛关注。然而,基于纤维素的材料在耐久性和阻燃性方面面临挑战,这限制了它们的实际应用。在此,通过一步燃烧合成法制备了一种具有约0.95的高太阳反射率和约0.95的大气窗口发射率的结构多孔SiN-BN陶瓷。该多孔陶瓷在直射阳光下实现了5.14℃的亚环境辐射冷却性能,理论上产生的冷却功率为78.55W/m。SiN晶体的网络结构导致其弯曲强度为31.07MPa,抗压强度为65.36MPa。具有优异辐射冷却性能、机械性能和隔热性能的多孔SiN-BN陶瓷在建筑制冷领域展现出广阔的应用前景,尤其是在热带沙漠和岛屿地区的恶劣环境中。

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