Li Wenjie, Zhang Xiang, Yan Dukang, Wang Lebin, Sun Wenhai, Li Zitong, Deng Jianbo, Zhao Jiupeng, Li Yao
School of Environmental and Chemical Engineering, Heilongjiang University of Science and Technology, Harbin, 150022, P. R. China.
Center for Composite Materials and Structure, Harbin Institute of Technology, Harbin, 150001, P. R. China.
Small Methods. 2024 Jan;8(1):e2300850. doi: 10.1002/smtd.202300850. Epub 2023 Sep 19.
Electrochromic devices (ECDs) are a hot pot due to their significant energy-saving effect in green buildings. However, the ECDs suffer from degradation induced by ion trapping during cycling, which restricts their further development. Here, it is demonstrated that the electrochromic performance of the degraded ECDs can be rejuvenated by heat treatment method The release mechanism of trapped ions in films is simulated and validated using three types of ECDs. The semi-solid-state ECD evinces a state of near-failure at low temperatures can regain its initial performance by heating. All-solid-state ECDs, including amorphous WO (a-WO ECD) and crystalline WO (c-WO ECD) as the electrochromic layer, can also release the trapped ions and regain the performance (97.3% and 95.5% of initial optical modulation) by annealing, regardless of the way of degradation. The research has extended the lifespan of multiple ECDs, providing significant practical value and promoting sustainable, and eco-friendly development.
电致变色器件(ECDs)因其在绿色建筑中显著的节能效果而成为热点。然而,ECDs在循环过程中会因离子捕获而退化,这限制了它们的进一步发展。在此,通过热处理方法证明了退化的ECDs的电致变色性能可以恢复。使用三种类型的ECDs模拟并验证了薄膜中捕获离子的释放机制。半固态ECDs在低温下表现出接近失效的状态,通过加热可以恢复其初始性能。包括非晶WO(a-WO ECD)和晶体WO(c-WO ECD)作为电致变色层的全固态ECDs,无论退化方式如何,通过退火也可以释放捕获的离子并恢复性能(初始光学调制的97.3%和95.5%)。该研究延长了多种ECDs的寿命,具有重要的实用价值,促进了可持续和生态友好型发展。