材料科学
单线态氧
铋
兴奋剂
氧化还原
光催化
化学物理
载流子
硫化物
氧气
光电子学
析氧
化学工程
光化学
催化作用
物理化学
化学
电极
有机化学
冶金
工程类
生物化学
电化学
作者
Sen Jin,Wei Shao,Xiao Luo,Hui Wang,Xianshun Sun,Xin He,Xiaodong Zhang,Yi Xie
标识
DOI:10.1002/adma.202206516
摘要
Singlet oxygen (1 O2 ) with electrical neutrality and long lifetime holds great promise in producing high-added-value chemicals via a selective oxidation reaction. However, photocatalytic 1 O2 generation via the charge-transfer mechanism still suffers from low efficiency due to the mismatched redox capacities and low concentration of photogenerated carriers in confined systems. Herein, by taking bismuth oxysilicate (Bi2 O2 SiO3 ) with alternating heterogeneous layered structure as a model, it is shown that iodine doping can facilitate the spatial redistributions of bands on alternated [Bi2 O2 ] and [SiO3 ] layers, which can promote the separation and transfer of photogenerated charge carriers. Meanwhile, the band positions of Bi2 O2 SiO3 are optimized to match the redox potential of 1 O2 generation. Benefiting from these features, iodine-doped Bi2 O2 SiO3 exhibits efficient 1 O2 generation with respect to its pristine counterpart, leading to promoted performance in the selective sulfide oxidation reaction. A new strategy is offered here for optimizing charge-transfer-mediated 1 O2 generation.
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