Tunable Interaction between Zn 2+ and Superstructured Nb 18 W 16 O 93 Bimetallic Oxide for Multistep Tinted Electrochromic Device
作者:Ruirui Ren, Shiyou Liu, Yi Gao, Pengyang Lei, Jinhui Wang, Xingrui Tong, Ping Zhang, Zhuanpei Wang, Guofa Cai · 发表于:ACS Energy Letters · 年份:2023 · DOI:10.1021/acsenergylett.3c00484 · 被引用次数:68 · 研究领域:Transition Metal Oxide Nanomaterials、Conducting polymers and applications、Gas Sensing Nanomaterials and Sensors
Electrochromic devices (ECDs) present promising prospects in developing energy-saving applications, such as smart windows, antiglare mirrors, and information displays. Here, for the first time, we develop a multistep strategy to improve the electrochromic performance by fully using the adsorption/desorption, insertion/extraction, and reversible electrodeposition of Zn 2+ within the ECD based on the specific crystal superstructured Nb 18 W 16 O 93 film. The synergistic electrochemical process based on the Zn 2+ enables comprehensive enhancement of the electrochromic performance, such as large and broad optical modulation up to 87.0%, 96.2%, and 92.8% at 400, 633, and 1200 nm, respectively, remarkable cycling stability of 3500 cycles, and high coloration efficiency of 72.4 cm 2 C –1 . Furthermore, the assembled device delivers outstanding performance in wide-band and large optical modulation in response to a change in voltage. We believe that our multistep regulation in one device could provide a new strategy for developing high-performance ECDs and shed new light on exploring next-generation ECDs in the future.