电致变色
电解质
聚丙烯酰胺
电致变色装置
离子电导率
双功能
材料科学
聚合物
聚合
电导率
化学工程
电池(电)
制作
纳米技术
高分子化学
化学
电极
复合材料
有机化学
工程类
物理化学
医学
功率(物理)
物理
替代医学
量子力学
病理
催化作用
作者
Xinghui Ai,Qi Zhao,Yujuan Duan,Zhang Chen,Zhongtao Zhang,Yu Liu,Yanfeng Gao
标识
DOI:10.1016/j.xcrp.2022.101148
摘要
To achieve solid-state electrochromic devices, an acceptable compromise is to use polymer electrolyte gels, which combine the merits of liquid and solid electrolytes. However, many drawbacks remain, such as inflammability, a sharp decline in ionic conductivity at zero temperature, and interfacial problems with the electrodes. Here, we introduce a polyacrylamide (PAM)-based hydrogel electrolyte containing a high concentration of zinc ion, which delivers an ionic conductivity of 63.5 mS cm−1 at room temperature and 12.8 mS cm−1 at even −30°C. Based on the PAM-Zn2+ electrolyte, we prepare a quasi-solid WO3/PAM-Zn/Zn energy storage electrochromic bifunctional device by in situ polymerization. The device exhibits excellent cycle performance (retaining 45.1% of optical contrast after 9,200 cycles) and a high areal capacity (278.3 mAh m−2 at 0.1 mA cm−2). Furthermore, larger-sized electrochromic devices also show ultra-long cycle stability and attractive anti-freeze properties. This work provides an idea for the large-scale fabrication of anti-freeze electrochromic devices with remarkable lifetimes.
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