A Dual‐Mode Electrochromic Platform Integrating Zinc Anode‐Based and Rocking‐Chair Electrochromic Devices

电致变色 普鲁士蓝 材料科学 光电子学 电致变色装置 阳极 电极 电解质 双模 光学 电化学 电子工程 化学 物理化学 冶金 工程类 物理
作者
Wu Zhang,Haizeng Li,A. Y. Elezzabi
出处
期刊:Advanced Functional Materials [Wiley]
卷期号:33 (24) 被引量:58
标识
DOI:10.1002/adfm.202300155
摘要

Abstract The complementary electrochromic device, where the optical transmittance changes upon the flow of cations back and forth between anodic and cathodic electrodes, operates in a rocking‐chair fashion if it can inherently self‐discharge. Herein, the first demonstration of a dual‐mode electrochromic platform having self‐coloring and self‐bleaching characteristics is reported, which is realized by sandwiching zinc metal within a newly‐designed Prussian blue (PB)‐WO 3 rocking‐chair type electrochromic device. It is demonstrated that the redox potential differences between the zinc metal and the WO 3 /PB electrodes endow the self‐color‐switching of these electrodes. By employing a hybrid electrolyte of Zn 2+ /K + , it is further shown that the colored PB‐WO 3 rocking‐chair device is capable of spontaneously bleaching when the anodic and cathodic electrodes are coupled. This dual‐mode light‐control strategy enables the electrochromic devices to exhibit four distinct optical states with the highest optical contrast of 72.6% and fast switching times (<5 s for the bleaching/coloration processes). Furthermore, the built‐in voltage of the dual‐mode electrochromic devices not only promotes energy efficiency, but also augments the bistability of the devices. It is envisioned that the broad implication of the present platform is in the development of self‐powered smart windows, colorful displays, optoelectronic switches, and optical sensors.
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