Mjejri Issam, Duttine Mathieu, Buffière Sonia, Labrugère-Sarroste Christine, Rougier Aline
Université de Bordeaux, CNRS, Bx INP, ICMCB, UMR 5026, F-33600Pessac, France.
CNRS, Univ. Bx, PLACAMAT UMS 3626, F-33600Pessac, France.
Inorg Chem. 2022 Nov 21;61(46):18496-18503. doi: 10.1021/acs.inorgchem.2c02722. Epub 2022 Nov 4.
Since its discovery, electrochromism, known as the modulation of optical properties under an applied voltage, has attracted strong interest from the scientific community and has proved to be of significant utility in various applications. Although vanadium dioxide (VO) has been a candidate for extensive research for its thermochromic properties, its intrinsic electrochromism has scarcely been reported so far. In this study, multi-electrochromism is described for VO thick films. Indeed, a VO opaque film, doctor bladed from homemade monoclinic VO powder, shows a pronounced color modulation from orange to green and blue associated with an amorphization-recrystallization phenomenon upon cycling in a lithium-based electrolyte. The strong memory effect allows us to follow the coloration mechanism by combining various and characterizations addressing both structural and electronic aspects. Upon cycling, the multichromism of VO finds its origin in the transformation of VO into orange VO upon oxidation, while in reduction, the blue lithiated state illustrates a mixed vanadium oxidation state.
自发现以来,电致变色,即在施加电压下对光学性质进行调制,已引起科学界的浓厚兴趣,并已证明在各种应用中具有重要用途。尽管二氧化钒(VO)因其热致变色特性一直是广泛研究的对象,但其固有的电致变色特性迄今为止几乎未见报道。在本研究中,描述了VO厚膜的多电致变色现象。实际上,由自制的单斜VO粉末刮涂而成的VO不透明膜,在锂基电解质中循环时,会出现从橙色到绿色和蓝色的明显颜色调制,这与非晶化-再结晶现象有关。强大的记忆效应使我们能够通过结合各种解决结构和电子方面问题的表征来追踪着色机制。在循环过程中,VO的多色性源于氧化时VO转变为橙色VO,而在还原时,蓝色锂化状态表明钒处于混合氧化态。