Bai Ting, Li Wanzhong, Fu Guoxing, Shen Yi, Zhang Qianqian, Liu Jingbing, Xue Peng, Zhou Kailing, Wang Hao
Key Laboratory for New Functional Materials of Ministry of Education, Faculty of Materials and Manufacturing, Beijing University of Technology, Beijing100124, P. R. China.
Beijing Key Laboratory of Green Built Environment and Energy Efficient Technology, Beijing University of Technology, Beijing100124, P. R. China.
ACS Appl Mater Interfaces. 2022 Nov 23;14(46):52193-52203. doi: 10.1021/acsami.2c16654. Epub 2022 Nov 11.
Dual-band electrochromic smart windows that can dynamically and independently control incident solar irradiation and visible light are envisioned as intelligent technology to reduce power consumption of buildings. However, there is still a great challenge to put the dual-band electrochromic technology into practice due to some limits in material systems and preparation techniques. Herein, a new electrochromic material of LiTiO is developed to implement the dual-band optical modulation behavior, which could be further improved by a precise control of the lithium content in the active material. It could separately modulate the light and heat based on regulation of the transmittance of visible and near-infrared light. This enables LiTiO to operate in three distinct modes of bright, cool, and dark, so as to meet various indoor needs. The optical transmittance contrast reaches over 60% at both visible- and near-infrared-light regions between different modes, and a large range of apparent temperature adjustments (7 °C) could be achieved. The prototype device based on dual-band electrochromic LiTiO is further developed into a smart window of a house model, which exhibits good optical and thermal modulation behaviors in response to a high-temperature environment. This work provides a new material system for achieving dual-band electrochromic optical modulation toward smart energy-saving window applications.
可动态且独立地控制入射太阳辐射和可见光的双波段电致变色智能窗,被视作降低建筑物能耗的智能技术。然而,由于材料体系和制备技术方面的一些限制,将双波段电致变色技术付诸实践仍面临巨大挑战。在此,开发了一种新型电致变色材料LiTiO来实现双波段光调制行为,通过精确控制活性材料中的锂含量可进一步改善该行为。它可基于对可见光和近红外光透过率的调节分别调制光和热。这使得LiTiO能够在明亮、凉爽和黑暗三种不同模式下运行,以满足各种室内需求。在不同模式之间,可见光和近红外光区域的光学透过率对比度均超过60%,并且可以实现大范围的表观温度调节(7℃)。基于双波段电致变色LiTiO的原型器件进一步发展成为房屋模型的智能窗,其在高温环境下表现出良好的光学和热调制行为。这项工作为实现面向智能节能窗应用的双波段电致变色光调制提供了一种新的材料体系。