Zhang Wu, Li Haizeng, Yu William W, Elezzabi Abdulhakem Y
Ultrafast Optics and Nanophotonics Laboratory Department of Electrical and Computer Engineering University of Alberta Edmonton Alberta T6G 2V4 Canada.
Institute of Frontier & Interdisciplinary Science Shandong University Qingdao 266237 China.
Small Sci. 2021 Sep 21;1(12):2100040. doi: 10.1002/smsc.202100040. eCollection 2021 Dec.
The development of electrochromic materials has opened the door to the development of numerous devices including smart windows, color displays, optical filters, wearable camouflages, among others. Although the current electrochromic devices do not consume energy while maintaining their colored or colorless states, their bistable operation requires external electrical energy to be consumed during switching. To reduce the energy consumption of an electrochromic device, an emerging Zn anode-based electrochromic device concept was recently introduced to partially retrieve the consumed electrical energy. In this Review, key technological developments and scientific challenges are presented for a broad range of Zn anode-based electrochromic device configurations with emphasis on the inherent distinctions between the Zn anode-based and conventional electrochromic devices. Specifically, a comprehensive comparison of the two classes of electrochromic devices in the high-performance device design is provided. For the electrochromic layer, the methods for obtaining high-quality electrochromic materials and thin films are reviewed. For the electrolytes, the effect of the dual ion system on the electrochromic performance is discussed. Also, some critical but unresolved issues in the device design and fabrication are discussed. The perspectives and outlook at the end of this Review provide recommendations to improve performance for future electrochromic studies.
电致变色材料的发展为众多设备的开发打开了大门,这些设备包括智能窗户、彩色显示器、光学滤波器、可穿戴伪装等等。尽管当前的电致变色设备在保持其有色或无色状态时不消耗能量,但其双稳态操作在切换过程中需要消耗外部电能。为了降低电致变色设备的能耗,最近引入了一种新兴的基于锌阳极的电致变色设备概念,以部分回收消耗的电能。在这篇综述中,介绍了一系列基于锌阳极的电致变色设备配置的关键技术发展和科学挑战,重点强调了基于锌阳极的电致变色设备与传统电致变色设备之间的固有区别。具体而言,在高性能设备设计中对这两类电致变色设备进行了全面比较。对于电致变色层,综述了获得高质量电致变色材料和薄膜的方法。对于电解质,讨论了双离子体系对电致变色性能的影响。此外,还讨论了设备设计和制造中一些关键但未解决的问题。本综述结尾的展望为未来电致变色研究的性能改进提供了建议。