Wang Zhenxing, Liu Guofeng, Li Chonghui, Qiao Mei, Tian Meng, Lin Xiaohui, Cui Wanling, Wang Xiaoxin, Liu Jinhai, Xu Shicai
College of Physics and Electronic Information, Shandong Key Laboratory of Biophysics, Dezhou University, Dezhou 253023, China.
Materials (Basel). 2025 Jan 3;18(1):161. doi: 10.3390/ma18010161.
Electrochromic capacitors, which are capable of altering their appearances in line with their charged states, are drawing substantial attention from both academia and industry. Tungsten oxide is usually used as an electrochromic layer material for electrochromic devices, or as an active material for high-performance capacitor electrodes. Despite this, acceptable visual aesthetics in electrochromic capacitors have almost never been achieved using tungsten oxide, because, in its pure form, this compound only displays a onefold color modulation from transparent to blue. Herein, we have designed W/WO/TiO multilayer films by a magnetron sputtering device. The impact of TiO layer on the optical and electrochemical properties was investigated. The results show that the optimum thickness of the TiO layer is 10 nm. The as-prepared film displays a high coloration efficiency (CE) of 74.2 cm C, a high areal capacitance of 32.0 mF/cm, an excellent rate performance (with the areal capacitance still retaining 87% of the maximum capacitance at a current density of 1 mA/cm), and a high cycle life (with a capacity retention of 91% after 1000 cycles).
电致变色电容器能够根据其充电状态改变外观,正吸引着学术界和工业界的广泛关注。氧化钨通常用作电致变色器件的电致变色层材料,或用作高性能电容器电极的活性材料。尽管如此,使用氧化钨几乎从未实现过电致变色电容器可接受的视觉美感,因为这种化合物以其纯形式仅显示从透明到蓝色的单一颜色调制。在此,我们通过磁控溅射装置设计了W/WO/TiO多层膜。研究了TiO层对光学和电化学性能的影响。结果表明,TiO层的最佳厚度为10nm。所制备的薄膜显示出74.2cm C的高着色效率(CE)、32.0mF/cm的高面积电容、优异的倍率性能(在电流密度为1mA/cm时面积电容仍保留最大电容的87%)以及高循环寿命(1000次循环后容量保持率为91%)。