Giant Electron–Hole Interactions in Confined Layered Structures for Molecular Oxygen Activation

化学 化学物理 电子 氧气 纳米技术 物理 材料科学 量子力学 有机化学
作者
Hui Wang,Shichuan Chen,Dingyu Yong,Xiaodong Zhang,Shuang Li,Wei Shao,Xianshun Sun,Bicai Pan,Yi Xie
出处
期刊:Journal of the American Chemical Society [American Chemical Society]
卷期号:139 (13): 4737-4742 被引量:310
标识
DOI:10.1021/jacs.6b12273
摘要

Numerous efforts have been devoted to understanding the excitation processes of photocatalysts, whereas the potential Coulomb interactions between photogenerated electrons and holes have been long ignored. Once these interactions are considered, excitonic effects will arise that undoubtedly influence the sunlight-driven catalytic processes. Herein, by taking bismuth oxyhalide as examples, we proposed that giant electron-hole interactions would be expected in confined layered structures, and excitons would be the dominating photoexcited species. Photocatalytic molecular oxygen activation tests were performed as a proof of concept, where singlet oxygen generation via energy transfer process was brightened. Further experiments verify that structural confinement is curial to the giant excitonic effects, where the involved catalytic process could be readily regulated via facet-engineering, thus enabling diverse reactive oxygen species generation. This study not only provides an excitonic prospective on photocatalytic processes, but also paves a new approach for pursuing systems with giant electron-hole interactions.
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