辐射冷却
材料科学
玻璃
涂层
辐射传输
发射率
光电子学
低发射率
透射率
被动冷却
基质(水族馆)
发光效率
复合材料
波长
热的
光学
图层(电子)
海洋学
物理
地质学
气象学
热力学
作者
Xin Hu,Yingbo Zhang,Jing Zhang,Hongyu Yang,Faming Wang,Bin Fei,Nuruzzaman Noor
标识
DOI:10.1016/j.renene.2022.05.008
摘要
Improving the energy efficiency of buildings through the use of enhanced passive radiative cooling materials would have a great relief to the global energy and climate crises. Through a purely solution-based sonochemical synthesis method raising no requirements on temperature and vacuum, we fabricated a ZnO-coated transparent wood (CTW) composite with high emissivity (∼0.91) across infrared wavelengths, allowing great potential for radiative cooling applications. The CTW exhibited a reasonable luminous transmittance (∼66.04% at a film thickness of ∼360 nm) for both visual comfort and luminous purposes. The ZnO coating improves the mechanical (43% enhancement of tensile strength) and thermal insulation (0.157 W.m−1.K−1) properties of the transparent wood substrate, making it a potential replacement for existing glazing materials. Energy-saving simulations for Hong Kong, Shanghai and Chongqing have revealed that CTW can save up to ∼17% more energy than conventional commercial window materials.
科研通智能强力驱动
Strongly Powered by AbleSci AI