4.6 Review

Synergistic Electric and Thermal Effects of Electrochromic Devices

期刊

MICROMACHINES
卷 13, 期 12, 页码 -

出版社

MDPI
DOI: 10.3390/mi13122187

关键词

electrochromic; thermal effect; synergistic; temperature

资金

  1. National Natural Science Foundation of China
  2. International Science & Technology Cooperation Program of Jilin
  3. Scientific and Technological Developing Scheme of Jilin Province
  4. Project of Science and Technology Development Plan of Jilin Province
  5. [61974054]
  6. [61675088]
  7. [20190701023GH]
  8. [20200401045GX]
  9. [20190302011G]

向作者/读者索取更多资源

Electrochromic devices are preferred for smart windows due to their independence from environmental factors and reliance on user input. Despite the impact of ambient temperature on device performance, recent research has significantly improved the devices in terms of longevity, color richness, and contrast.
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.

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