飞秒
亚稳态
空位缺陷
氧气
化学物理
材料科学
光谱学
金属
Crystal(编程语言)
晶体结构
氧原子
激发态
钨
结晶学
化学
原子物理学
激光器
计算机科学
冶金
光学
分子
物理
有机化学
程序设计语言
量子力学
作者
Xinping Zhang,Fawei Tang,Meng Wang,Wangbin Zhan,Huaxin Hu,Yurong Li,Richard H. Friend,Xiaoyan Song
出处
期刊:Science Advances
[American Association for the Advancement of Science (AAAS)]
日期:2020-03-06
卷期号:6 (10)
被引量:55
标识
DOI:10.1126/sciadv.aax9427
摘要
Oxygen vacancies often determine the electronic structure of metal oxides, but existing techniques cannot distinguish the oxygen-vacancy sites in the crystal structure. We report here that time-resolved optical spectroscopy can solve this challenge and determine the spatial locations of oxygen vacancies. Using tungsten oxides as examples, we identified the true oxygen-vacancy sites in WO2.9 and WO2.72, typical derivatives of WO3 and determined their fingerprint optoelectronic features. We find that a metastable band with a three-stage evolution dynamics of the excited states is present in WO2.9 but is absent in WO2.72. By comparison with model bandstructure calculations, this enables determination of the most closely neighbored oxygen-vacancy pairs in the crystal structure of WO2.72, for which two oxygen vacancies are ortho-positioned to a single W atom as a sole configuration among all O─W bonds. These findings verify the existence of preference rules of oxygen vacancies in metal oxides.
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