Yuan Meng, Yin Hanlin, Liu Yitong, Wang Xiaohua, Yuan Long, Duan Yu
College of Science, Changchun University of Science and Technology, Changchun 130012, China.
Key Laboratory of Functional Materials Physics and Chemistry of the Ministry of Education, Jilin Normal University, Changchun 130012, China.
Micromachines (Basel). 2022 Dec 10;13(12):2187. doi: 10.3390/mi13122187.
Electrochromic devices are the preferred devices for smart windows because they work independently of uncontrollable environmental factors and rely more on the user's personal feelings to adjust actively. However, in practical applications, the ambient temperature still has an impact on device performance, such as durability, reversibility and switching performance, etc. These technical issues have significantly slowed down the commercialization of electrochromic devices (ECDs). It is necessary to investigate the main reasons for the influence of temperature on the device and make reasonable optimization to enhance the effectiveness of the device and extend its lifetime. In recent years, with the joint efforts of various outstanding research teams, the performance of electrochromic devices has been rapidly improved, with a longer lifetime, richer colors, and better color contrast. This review highlights the important research on temperature-dependent electrochromic properties in recent years. Also, the reported structures, mechanisms, characteristics, and methods for improving electrochromic properties are discussed in detail. In addition, the challenges and corresponding strategies in this field are presented in this paper. This paper will inspire more researchers to enrich the temperature-dependent properties of ECDs and their related fields with innovative means and methods to overcome the technical obstacles faced.
电致变色器件是智能窗户的首选器件,因为它们的工作独立于不可控的环境因素,更多地依赖用户的个人感受来进行主动调节。然而,在实际应用中,环境温度仍然会对器件性能产生影响,如耐久性、可逆性和开关性能等。这些技术问题显著延缓了电致变色器件(ECDs)的商业化进程。有必要研究温度对器件产生影响的主要原因,并进行合理优化,以提高器件的效能并延长其使用寿命。近年来,在各个优秀研究团队的共同努力下,电致变色器件的性能得到了快速提升,具有更长的使用寿命、更丰富的颜色以及更好的颜色对比度。本综述重点介绍了近年来关于温度依赖型电致变色性能的重要研究。此外,还详细讨论了已报道的结构、机理、特性以及改善电致变色性能的方法。同时,本文还提出了该领域面临的挑战及相应策略。本文将激励更多研究人员用创新的手段和方法丰富电致变色器件及其相关领域的温度依赖特性,以克服所面临的技术障碍。