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Potential Gradient Electrolyte System Design for Fast and Stable Self-Switching Electrochromic Energy-Storage Device

作者:Pengfei Wang, Yan Zhou, Fan Yang, Guangliang Wu, Jinmin Wang, Dongyun Ma · 发表于:ACS Energy Letters · 年份:2025 · DOI:10.1021/acsenergylett.5c02575 · 被引用次数:4 · 研究领域:Transition Metal Oxide Nanomaterials、Conducting polymers and applications、Advanced battery technologies research

Electrochromic (EC) smart windows are promising for both energy-savings and energy-storage in buildings. However, conventional EC devices require external power to operate. Herein, we propose a potential-gradient electrolyte composed of KCl and K 2 S 2 O 8 solutions that are separated by a cation exchange membrane (CEM), which is sandwiched between Zn and Prussian blue (PB) electrodes to achieve a self-powered EC device, where large potential-differences between Zn and PB and between PB and K 2 S 2 O 8 can be built. Therefore, the device can be chemically self-discharged and self-recharged by the potential-difference-driven spontaneous redox reaction between PB and Prussian white (PW), enabling fast self-bleaching/self-coloration time of 3.6/10.3 s by connecting/disconnecting the Zn and PB electrodes. Moreover, the CEM is capable of preventing the Zn electrode from being dissolved and corroded by K 2 S 2 O 8 solution, endowing the device with a stable self-switching feature. Our strategy of a potential-gradient electrolyte system design paves the new way for developing stable and fast self-switching EC energy-storage devices.