电致变色
佩多:嘘
储能
合理设计
材料科学
纳米技术
光电子学
化学工程
化学
功率(物理)
工程类
电极
物理
量子力学
物理化学
图层(电子)
作者
Yingdi Shi,Yong Zhang,Yulei Zheng,Kai Tang,Xiang Ke,Zirong Li,Jing Tang,Longqiang Ye,Zhenzhen Hui
标识
DOI:10.1016/j.jpowsour.2025.236664
摘要
In this research, we report on the fabrication of hollow WO 3 /PEDOT/WO 3 nanospheres through template-assisted magnetron sputtering combined with one-pot sequential electrochemical deposition . The PEDOT layer creates an efficient conductive network that facilitates electron transport , while the unique hollow nanosphere architecture and the low crystallinity WO 3 layers provide short diffusion lengths and numerous binding sites for small ions, respectively. The sandwiched hybrid structure enhances the protection of the intermediate conductive PEDOT layer and provides an improved synergistic effect , leading to better electrochromic and energy storage performance. The electrochromic performance of the hollow WO 3 /PEDOT/WO 3 nanospheres is exceptional, exhibiting a significant optical modulation in both the visible and near-infrared regions (96.4 % at 633 nm, 91.5 % at 1500 nm). Additionally, these nanospheres demonstrate rapid response times for coloring (3.0 s) and bleaching (5.6 s), while maintaining excellent cycling stability (with only an 11.4 % decrease in optical modulation after undergoing 6000 cycles). Moreover, their coloration efficiency is decent (115.6 cm 2 C -1 ) when operated at low potentials for coloration/bleaching (−1.0/1.0V). The nanospheres also demonstrate high areal capacitance of 47.5 mF cm −2 , superior rate capability, and good cyclic stability. The aforementioned properties render it a promising candidate for high efficiency electrochromic energy storage applications . • WO 3 /PEDOT/WO 3 nanospheres are prepared via sputtering and electrochemical deposition . • The material exhibits dual functionality as an electrochromic and supercapacitor. • The hollow structure provides short diffusion lengths for enhanced performance. • The hybrid structure enhances electrochromic and energy storage performance. • The sandwiched design protects PEDOT, improving structural integrity.
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