Wu Jiang-Yuan, An Bao-Lin, Dong Wei, Yang Zhen, Duan Yuan-Yuan
Key Laboratory for Thermal Science and Power Engineering of Ministry of Education, Beijing Key Laboratory for CO2 Utilization and Reduction Technology, Tsinghua University, Beijing 100084, People's Republic of China.
National Institute of Metrology of China, Beijing 100029, People's Republic of China.
J Phys Condens Matter. 2024 Mar 27;36(25). doi: 10.1088/1361-648X/ad33f0.
Metal/dielectric multilayer films have important applications in energy-saving glass, stealth materials, solar energy utilization and other fields. In the current study, the thickness of each layer of TiO/Ag/TiO/Ag/TiOfilm is optimized. The effects of the number of metal/dielectric multilayer films and the incident light angle on their optical properties were investigated. The TiO/Ag/TiO/Ag/TiOfilm was prepared by electron beam evaporation coating technology, and their reflectance and transmittance were measured. The measurement results show that the visible light transmittance (380-780 nm) of the film can achieve 68.7%, and the infrared reflectance (780-2500 nm) can reach 95.9%. Compared with the traditional dielectric/metal/dielectric three-layer film, the visible light transmittance of the film is higher, and the solar infrared reflectance is greatly improved. In the solar radiation band (280-2500 nm), the average error between the experimental reflectance and transmittance and the theoretical prediction results is less than 0.03. The distribution of electric and magnetic fields inside the film was simulated by finite-difference time-domain method. The simulation results show that the high visible light transmittance is due to the interference resonance of electromagnetic waves inside the film. Taking Shanghai as an example, under our calculation conditions, compared with ordinary SiOglass, TiO/Ag/TiO/Ag/TiOfilm can reduce the total energy consumption of buildings by 14.3% and refrigeration energy consumption by 17.2%.
金属/介质多层膜在节能玻璃、隐身材料、太阳能利用等领域有着重要应用。在当前研究中,对TiO/Ag/TiO/Ag/TiO薄膜的每层厚度进行了优化。研究了金属/介质多层膜的层数和入射光角度对其光学性能的影响。采用电子束蒸发镀膜技术制备了TiO/Ag/TiO/Ag/TiO薄膜,并测量了其反射率和透射率。测量结果表明,该薄膜的可见光透射率(380 - 780 nm)可达68.7%,红外反射率(780 - 2500 nm)可达95.9%。与传统的介质/金属/介质三层膜相比,该薄膜的可见光透射率更高,太阳能红外反射率有很大提高。在太阳辐射波段(280 - 2500 nm),实验反射率和透射率与理论预测结果之间的平均误差小于0.03。采用时域有限差分法对薄膜内部的电场和磁场分布进行了模拟。模拟结果表明,高可见光透射率是由于薄膜内部电磁波的干涉共振所致。以上海为例,在我们的计算条件下,与普通SiO玻璃相比,TiO/Ag/TiO/Ag/TiO薄膜可使建筑物总能耗降低14.3%,制冷能耗降低17.2%。