无机材料学报 ›› 2025, Vol. 40 ›› Issue (10): 1163-1174.DOI: 10.15541/jim20250017

• 研究快报 • 上一篇    

基于WO3·xH2O与可逆金属电沉积的无色/黑色转换电致变色器件

宛心怡1, 王文奇1, 李加诚1, 赵俊亮2, 马董云1, 王金敏1()   

  1. 1 上海理工大学 材料与化学学院, 上海 200093
    2 上海半人马企业发展集团有限公司, 上海 201306
  • 收稿日期:2025-01-13 修回日期:2025-03-03 出版日期:2025-04-09 网络出版日期:2025-04-09
  • 通讯作者: 王金敏, 教授. E-mail: jmwang@usst.edu.cn.
  • 作者简介:宛心怡(2000-), 女, 硕士研究生. E-mail: 222143048@st.usst.edu.cn

Colorless/Black Switching Electrochromic Device Based on WO3·xH2O and Reversible Metal Electrodeposition

WAN Xinyi1, WANG Wenqi1, LI Jiacheng1, ZHAO Junliang2, MA Dongyun1, WANG Jinmin1()   

  1. 1 School of Materials and Chemistry, University of Shanghai for Science and Technology, Shanghai 200093, China
    2 Shanghai Berma Enterprise Development Group Co., Ltd., Shanghai 201306, China
  • Received:2025-01-13 Revised:2025-03-03 Published:2025-04-09 Online:2025-04-09
  • Contact: WANG Jinmin, professor. E-mail: jmwang@usst.edu.cn.
  • About author:WAN Xinyi (2000-), female, Master candidate. E-mail: 222143048@st.usst.edu.cn

摘要:

可逆金属电沉积器件(Reversible Metal Electrodeposition Device, RMED)的电致变色(Electrochromic, EC)智能窗为动态调节光和热的传输提供了一个极具吸引力的替代方案。本工作通过在氟掺杂氧化锡(Fluorine-doped Tin Oxide, FTO)透明导电玻璃上电沉积WO3·xH2O薄膜, 再利用Bi/Cu的可逆金属电沉积来构建电致变色器件(Electrochromic Device, ECD)。电解质由CuCl2、BiCl3、KCl和HCl水溶液组成, 为电化学过程和电沉积过程提供必要的成分。该器件可在无色和黑色状态之间快速转换, 在570 nm波长处实现了77.0%的光调制幅度。在黑色状态下, ECD在400~1100 nm范围内呈现出接近零的透过率。此外, 经历60000 s的着色/褪色循环后, 该器件能够维持其初始光调制幅度的96.6%, 展现出良好的循环稳定性。所制备的RMED在开路电压下具有相对较高的稳定性, 还拥有出色的隔热性能。这些研究结果为克服RMED循环稳定性差以及提高ECD的光调制幅度提供了一种解决方案。

关键词: 可逆金属电沉积, 电致变色, WO3·xH2O

Abstract:

Electrochromic (EC) smart windows utilizing a reversible metal electrodeposition device (RMED) offer a compelling alternative for dynamically regulating transmissions of optical and thermal energy. An EC device (ECD) is constructed by reversible metal electrodeposition (RME) of Bi/Cu on WO3·xH2O film electrodeposited onto fluorine-doped tin oxide (FTO) transparent conductive glass. The electrolyte consists of CuCl2, BiCl3, KCl and HCl aqueous solution, supplying necessary components for both electrochemical and electrodeposition processes. The ECD shows ability to rapidly transition between colorless and black states, which achieves a large optical modulation of 77.0% at 570 nm. In the black state, the ECD exhibits a near-zero transmittance in the wavelength range of 400-1100 nm while maintaining 96.6% of its initial optical modulation after coloration/bleaching cycling of 60000 s, exhibiting good cyclic stability. This RMED has relatively high stability under open-circuit voltage and also possesses excellent heat insulation performance. The results offer a solution to overcome the poor cyclic stability of RMEDs and improve the optical modulation of ECDs.

Key words: reversible metal electrodeposition, electrochromic, WO3·xH2O

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