Author:
Liu Sai,Tso Chi Yan,Lee Hau Him,Zhang Yi,Yu Kin Man,Chao Christopher Y. H.
Abstract
AbstractVanadium dioxide (VO2) is a promising material for thermochromic glazing. However, VO2 thermochromic smart windows suffer from several problems that prevent commercialization: low luminous transmittance (Tlum) and low solar modulation ability (ΔTsol). The solution to these problems can be sought from nature where the evolution of various species has enabled them to survive. Investigations into the morphology of moths eyes has shown that their unique nanostructures provide an excellent antireflection optical layer that helps moths sharply capture the light in each wavelength from a wide angle. Inspired by this mechanism, a VO2 thermochromic smart window coated with a TiO2 antireflection layer with a novel nano-cone structure, is presented in this study to achieve high Tlum and ΔTsol. Optimization for the key structure parameters is summarized based on the FDTD numerical simulations. The optimized structure exhibits a Tlum of 55.4% with ΔTsol of 11.3%, an improvement of about 39% and 72% respectively compared to the VO2 window without an antireflection layer. Furthermore, wide-angle antireflection and polarization independence are also demonstrated by this nano-cone coating. This work provides an alternative method to enhance the optical performance of VO2 smart windows.
Funder
Hong Kong Research Grant Council
City University of Hong Kong
Publisher
Springer Science and Business Media LLC
Reference57 articles.
1. Kamalisarvestani, M., Saidur, R., Mekhilef, S. & Javadi, F. S. Performance, materials and coating technologies of thermochromic thin films on smart windows. Renew. Sustain. Energy Rev. 26, 353–364 (2013).
2. Ye, H., Meng, X. & Xu, B. Theoretical discussions of perfect window, ideal near infrared solar spectrum regulating window and current thermochromic window. Energy Build. 49, 164–172 (2012).
3. Zhang, Y. et al. Perovskite thermochromic smart window: Advanced optical properties and low transition temperature. Appl. Energy 254, 113690 (2019).
4. Li, M., Magdassi, S., Gao, Y. & Long, Y. Hydrothermal synthesis of VO2 polymorphs: Advantages, challenges and prospects for the application of energy efficient smart windows. Small 13, 1–25 (2017).
5. Qian, X. et al. Bioinspired multifunctional vanadium dioxide: Improved thermochromism and hydrophobicity. Langmuir 30, 10766–10771 (2014).
Cited by
38 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献