Spatial Band Separation in a Surface Doped Heterolayered Structure for Realizing Efficient Singlet Oxygen Generation.

Advanced materials (Deerfield Beach, Fla.)(2022)

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摘要
Singlet oxygen ( O ) with electrical neutrality and long lifetime holds great promise in producing high-added-value chemicals via a selective oxidation reaction. However, photocatalytic O 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 (Bi O SiO ) with alternating heterogeneous layered structure as a model, it is shown that iodine doping can facilitate the spatial redistributions of bands on alternated [Bi O ] and [SiO ] layers, which can promote the separation and transfer of photogenerated charge carriers. Meanwhile, the band positions of Bi O SiO are optimized to match the redox potential of O generation. Benefiting from these features, iodine-doped Bi O SiO exhibits efficient O 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 O generation.
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关键词
charge-transfer process,heterolayered structured,singlet oxygen,spatial band separation,surface doping
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