Xu Ming, Wu Tianhui, Yin Ke, Li Lei, Li Yuhang, Zhao Xiaoyu, Lu Li, Gu Jianmin, Wang Desong
State Key Laboratory of Metastable Materials Science and Technology (MMST), Hebei Key Laboratory of Applied Chemistry, Yanshan University, Qinhuangdao, 066004, P. R. China.
Department of Food and Pharmaceutical Engineering, Suihua University, Suihua, 152000, P. R. China.
Small Methods. 2025 Apr;9(4):e2401188. doi: 10.1002/smtd.202401188. Epub 2024 Oct 14.
The dual-functional device combining electrochromic properties and energy storage has gained numerous attentions in the field of energy-saving smart electronics. However, achieving simultaneous optimization of coloration efficiency and energy storage capacity of materials poses a significant challenge. This study presents a novel approach by incorporating methyl orange into Prussian blue channels (PB-MO films) to adjust the internal electronic structure of Prussian blue. This modification allows the active layer to simultaneously improve the electrochromic and energy storage performance. The introduction of methyl orange not only alters the ratio of Fe/Fe within the framework through the coordination reaction of Fe with methyl orange, but also improves the reaction kinetics after intercalating organic dye molecules, including charge transfer resistance, diffusion capability of ions and capacitive contribution. The PB-MO films demonstrate remarkable properties: high optical contrast (81.4% at 670 nm), excellent coloration efficiency (265 cm C), and significant specific capacity (84 mAh m at 0.05 A m), outperforming pure PB films. The PB-MO films are ideally suited for applications in displays and intelligent energy storage fields, boasting both high coloration efficiency and substantial energy storage capacity, thus advancing promote the development of dual-functional electrochromic devices.
兼具电致变色特性和能量存储功能的双功能器件在节能智能电子领域受到了广泛关注。然而,实现材料的着色效率和能量存储容量的同时优化面临着重大挑战。本研究提出了一种新方法,即将甲基橙引入普鲁士蓝通道(PB-MO薄膜)以调节普鲁士蓝的内部电子结构。这种改性使活性层能够同时提高电致变色和能量存储性能。甲基橙的引入不仅通过铁与甲基橙的配位反应改变了骨架内铁/铁的比例,还在插入有机染料分子后改善了反应动力学,包括电荷转移电阻、离子扩散能力和电容贡献。PB-MO薄膜表现出显著的性能:在670nm处具有高光学对比度(81.4%)、出色的着色效率(265cm²/C)和显著的比容量(在0.05A/m²时为84mAh/m²),优于纯PB薄膜。PB-MO薄膜非常适合用于显示和智能能量存储领域,兼具高着色效率和大容量能量存储能力,从而推动了双功能电致变色器件的发展。