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所有基于LiF电解质的固态电致变色器件。

All solid state electrochromic devices based on the LiF electrolyte.

作者信息

Chen Xi, Dou Shuliang, Li Wenjie, Liu Dongqi, Zhang Yongfu, Zhao Yingming, Li Yao, Zhao Jiupeng, Zhang Xiang

机构信息

National Key Laboratory of Science and Technology on Advanced Composites in Special Environments, Harbin Institute of Technology, Harbin 150001, P. R. China.

出版信息

Chem Commun (Camb). 2020 May 7;56(37):5018-5021. doi: 10.1039/d0cc00697a. Epub 2020 Apr 3.

Abstract

The unsafe deposition process and slow deposition rate of the electrolyte layers are the main obstacles for electrochromic devices (ECDs) toward commercial application. In this work, an ECD with a structure of glass/ITO/WO/LiF/NiO/ITO has been prepared by electron beam and resistance evaporation methods. The LiF electrolyte is deposited by resistance evaporation with the LiF particles and shows promising potential as the Li based electrolyte in ECDs owing to its high transparency and good ionic conductivity. The ECD shows a fast response (4.0 s for bleaching and 9.6 s for coloring), large optical transmittance modulations (∼58.9% at 625 nm, 100 s for coloring), good stability and high coloration efficiency (88.5 cm C). This work not only indicates that LiF can be used as a Li based electrolyte in an ECD, but also paves a new way to fast and safe preparation of ECDs with high performance.

摘要

电解质层不安全的沉积过程和缓慢的沉积速率是电致变色器件(ECD)实现商业应用的主要障碍。在这项工作中,通过电子束和电阻蒸发方法制备了具有玻璃/ITO/WO/LiF/NiO/ITO结构的ECD。LiF电解质通过LiF颗粒的电阻蒸发沉积,由于其高透明度和良好的离子导电性,在ECD中作为锂基电解质显示出有前景的潜力。该ECD显示出快速响应(漂白4.0秒,着色9.6秒)、大的光学透过率调制(在625nm处约为58.9%,着色100秒)、良好的稳定性和高着色效率(88.5 cm C)。这项工作不仅表明LiF可作为ECD中的锂基电解质,还为快速安全地制备高性能ECD开辟了一条新途径。

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