Wang Jinhui, Zhou Yiping, Lv Ying, Feng Ji-Fei, Wang Zhuanpei, Cai Guofa
Key Laboratory for Special Functional Materials of Ministry of Education, National & Local Joint Engineering Research Center for High-efficiency Display and Lighting Technology, School of Materials Science and Engineering, and Collaborative Innovation Center of Nano Functional Materials and Applications, Henan University, Kaifeng, 475004, China.
Small. 2024 May;20(21):e2310229. doi: 10.1002/smll.202310229. Epub 2024 Jan 7.
Electrochromic technology offers exciting opportunities for smart applications such as energy-saving and interactive systems. However, achieving dual-band regulation together with the multicolor function is still an unmet challenge for electrochromic devices. Herein, an ingenious electrochromic strategy based on reversible manganese oxide (MnO) electrodeposition, different from traditional ion intercalation/deintercalation-type electrochromic materials is proposed. Such a deposition/dissolution-based MnO brings an intriguing electrochromic feature of dual-band regulation for the ultraviolet (UV) and visible lights with high optical modulation (93.2% and 93.6% at 400 and 550 nm, respectively) and remarkable optical memory. Moreover, a demonstrative smart window assembled by MnO and Cu electrodes delivers the electrochromic properties of effective dual-band regulation accompanied by multicolor changes (transparent, yellow, and brown). The robust redox deposition/dissolution process endows the MnO-based electrochromic device with excellent rate capability and an areal capacity of 570 mAh m at 0.1 mA cm. It is believed that the metal oxide-based reversible electrodeposition strategy would be an attractive and promising electrochromic technology and provide a train of thought for the development of multifunctional electrochromic devices and applications.
电致变色技术为节能和交互式系统等智能应用提供了令人兴奋的机遇。然而,实现双波段调节以及多色功能对于电致变色器件来说仍是一个尚未解决的挑战。在此,我们提出了一种基于可逆氧化锰(MnO)电沉积的巧妙电致变色策略,这与传统的离子嵌入/脱嵌型电致变色材料不同。这种基于沉积/溶解的MnO带来了一种有趣的电致变色特性,即对紫外线(UV)和可见光进行双波段调节,具有高光学调制(在400和550 nm处分别为93.2%和93.6%)以及显著的光学记忆效应。此外,由MnO和Cu电极组装而成的演示性智能窗展现出有效的双波段调节电致变色特性,并伴有多色变化(透明、黄色和棕色)。稳健的氧化还原沉积/溶解过程赋予了基于MnO的电致变色器件优异的倍率性能,在0.1 mA cm下面积容量为570 mAh m 。相信基于金属氧化物的可逆电沉积策略将是一种有吸引力且有前景的电致变色技术,并为多功能电致变色器件及应用的发展提供一系列思路。