Zhang Chenyang, Li Shanlin, Wu Ruoyu, Wu Sisi, Wang Xiaoyu, Xie Hao, Yan Dongdong, Liu Yi, Ye Weixiang, Wang Changhong, Cong Shan, Wang Zhen, Zhao Zhigang
School of Physics and Optoelectronic Engineering, Hainan University, Haikou 570228, China.
Key Laboratory of Research on Utilization of Si-Zr-Ti Resources of Hainan Province, School of Materials Science and Engineering, Hainan University, Haikou 570228, China.
Nano Lett. 2024 Dec 25;24(51):16360-16367. doi: 10.1021/acs.nanolett.4c04849. Epub 2024 Dec 12.
Reversible electrodeposition and dissolution of manganese oxide (MnO) represent an emerging electrochromic system. However, challenges such as "dead MnO" formation, limited optical modulation across a narrow wavelength range, and difficulties in scaling up have significantly hindered the development of MnO reversible electrodeposition-based electrochromic windows. In this work, we introduced Fe/Fe mediator ions into the electrolyte to suppress the Jahn-Teller effect, thereby preventing the formation of "dead MnO" and achieving stable and reversible MnO deposition/dissolution. Furthermore, by employing WO as the counter electrode, we developed a complementary electrochromic device based on ion insertion and metal oxide deposition. This complementary system exhibits color neutrality in the colored state and high optical contrast across the entire visible spectrum, with an average optical modulation of 67.3%, excellent cycling stability (85.0% retention after 3000 cycles), and capability to switch uniformly over areas as large as 100 cm.
氧化锰(MnO)的可逆电沉积和溶解代表了一种新兴的电致变色系统。然而,诸如“死MnO”形成、在窄波长范围内有限的光学调制以及放大困难等挑战,严重阻碍了基于MnO可逆电沉积的电致变色窗的发展。在这项工作中,我们将Fe/Fe介导离子引入电解质中以抑制 Jahn-Teller 效应,从而防止“死MnO”的形成并实现稳定且可逆的MnO沉积/溶解。此外,通过使用WO作为对电极,我们开发了一种基于离子插入和金属氧化物沉积的互补电致变色器件。这种互补系统在着色状态下呈现颜色中性,在整个可见光谱范围内具有高光学对比度,平均光学调制为67.3%,具有出色的循环稳定性(3000次循环后保留率为85.0%),并且能够在高达100 cm² 的大面积上均匀切换。