材料科学
电致变色
共晶体系
电解质
深共晶溶剂
纳米技术
电致变色装置
离子电导率
透射率
大气温度范围
电池(电)
化学工程
玻璃
工作温度
离子键合
红外线的
光电子学
快离子导体
耐久性
热稳定性
溶剂化
航程(航空)
溶解
导电体
电极
作者
M Ma,Sensen Jia,Chenchen Bian,Weilong Yang,Yu Zhong,Jicang Ma,Guofa Cai
标识
DOI:10.1002/adfm.202520971
摘要
Abstract Diverse application scenarios often require electrochromic devices (ECDs) to possess high durability over a wide temperature range. Unfortunately, most ECDs suffer from limited operating temperatures due to electrolyte decomposition at high temperatures and sluggish reaction kinetics at low temperatures. Herein, by tailoring the solvation structure, a temperature‐adaptive deep eutectic solvent (DES)‐based electrolyte is developed. Over a wide temperature range of −25 to 60 °C, this DES‐based electrolyte exhibits exceptionally high transmittance of over 95% within the broad visible‐near infrared range (300–1100 nm) and outstanding ionic conductivity. Moreover, the DES‐based electrolyte enables WO 3 film to achieve excellent electrochromic performance in a wide temperature range, embodying large optical modulation (74% at −25 °C and 82% at 60 °C), fast responses (< 8 s), good optical memory, and remarkable cycling stability (1500 cycles). ECDs assembled by the DES‐based electrolyte can also operate over −25 to 60 °C. The DES‐based temperature adaptive electrolyte opens an avenue for wide‐temperature ECD designs.
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