Zhao Yong, Ji Haining, Lu Mingying, Tao Jundong, Ou Yangyong, Wang Yi, Chen Yongxing, Huang Yan, Wang Junlong, Mao Yuliang
School of Physics and Optoelectronics, Xiangtan University, Xiangtan 411105, China.
Nanomaterials (Basel). 2022 Nov 2;12(21):3865. doi: 10.3390/nano12213865.
Thermochromic smart windows are optical devices that can regulate their optical properties actively in response to external temperature changes. Due to their simple structures and as they do not require other additional energy supply devices, they have great potential in building energy-saving. However, conventional thermochromic smart windows generally have problems with high response temperatures and low response rates. Owing to their great effect in photothermal conversion, photothermal materials are often used in smart windows to assist phase transition so that they can quickly achieve the dual regulation of light and heat at room temperature. Based on this, research progress on the phase transition of photothermal material-assisted thermochromic smart windows is summarized. In this paper, the phase transition mechanisms of several thermochromic materials (VO, liquid crystals, and hydrogels) commonly used in the field of smart windows are introduced. Additionally, the applications of carbon-based nanomaterials, noble metal nanoparticles, and semiconductor (metal oxygen/sulfide) nanomaterials in thermochromic smart windows are summarized. The current challenges and solutions are further indicated and future research directions are also proposed.
热致变色智能窗是一种光学器件,能够根据外部温度变化主动调节其光学性能。由于其结构简单且无需其他额外的能量供应装置,在建筑节能方面具有巨大潜力。然而,传统的热致变色智能窗通常存在响应温度高和响应速率低的问题。由于光热材料在光热转换方面具有显著效果,因此常被用于智能窗中辅助相变,以便在室温下能够快速实现光和热的双重调节。基于此,总结了光热材料辅助热致变色智能窗的相变研究进展。本文介绍了智能窗领域常用的几种热致变色材料(VO、液晶和水凝胶)的相变机制。此外,还总结了碳基纳米材料、贵金属纳米颗粒和半导体(金属氧化物/硫化物)纳米材料在热致变色智能窗中的应用。进一步指出了当前面临的挑战及解决方案,并提出了未来的研究方向。