Wang Yuqi, Liu Yong, Wang Minmin, Wu Wenjun, Tian Maofei, Zhu Tao
College of Materials and Metallurgy, Guizhou University, Guiyang 550025, China.
School of Energy and Power Engineering and State Key Laboratory of Coal and CBM Co-Mining, North University of China, Taiyuan 030051, China.
Micromachines (Basel). 2024 Dec 11;15(12):1486. doi: 10.3390/mi15121486.
This study introduces the development of a W-M electrochromic film, characterized by a "coral"-like TiO@WO heterostructure, synthesized via a hydrothermal process leveraging the inherent instability of MXene. The film showcases exceptional electrochromic performance, with a coloring response time of 2.8 s, a bleaching response time of 4.6 s, and a high coloring efficiency of 137.02 cmC. It also demonstrates a superior light modulation ability of 73.83% at 1033 nm. Notably, the W-M film exhibits remarkable cyclic stability, retaining over 90% of its initial light modulation capacity after 4000 cycles, outperforming many existing electrochromic materials. The film's enhanced performance is credited to its coral-like structure, which boosts the specific surface area and promotes ion transport, and the TiO@WO heterojunctions, which enhance charge transfer and stabilize the material. Devices fabricated with the W-M film as the cathode and a PB film as the anode exhibit a seamless transition from dark blue to colorless, underscoring their potential for smart window and dynamic glass applications.
本研究介绍了一种W-M电致变色薄膜的研制情况,其特征为具有“珊瑚”状TiO@WO异质结构,通过利用MXene的固有不稳定性的水热法合成。该薄膜展现出优异的电致变色性能,着色响应时间为2.8秒,褪色响应时间为4.6秒,着色效率高达137.02 cmC。它在1033纳米处还展现出73.83%的卓越光调制能力。值得注意的是,W-M薄膜表现出显著的循环稳定性,在4000次循环后仍保留其初始光调制能力的90%以上,优于许多现有的电致变色材料。该薄膜性能的提升归功于其珊瑚状结构,它增加了比表面积并促进了离子传输,以及TiO@WO异质结,它增强了电荷转移并稳定了材料。以W-M薄膜为阴极、PB薄膜为阳极制造的器件呈现出从深蓝色到无色的无缝转变,突出了它们在智能窗和动态玻璃应用方面的潜力。