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Semiconducting MOF@ZnS Heterostructures for Photocatalytic Hydrogen Peroxide Production: Heterojunction Coverage Matters
183
Citations
55
References
2021
Year
Materials ScienceMetal‐organic FrameworkNh 2EngineeringPhotochemistryPhotoredox ProcessBand StructureInorganic PhotochemistryPhotocatalysisPhoto-electrochemical CellCatalysisChemistryHydrogenPhotoelectrocatalysisHybrid MaterialsPhotoelectrochemistryHeterojunction Coverage Matters
Abstract Construction of semiconducting metal‐organic framework based heterostructures is emerging as a promising strategy for enhancing their photocatalytic performances. Here, tetrapod‐like NH 2 ‐MIL‐125@ZnS heterostructures with tunable heterojunction coverage and well‐matched band structure are synthesized as photocatalysts. When used for photocatalytic O 2 reduction reaction, a heterojunction coverage of ≈45.1% leads to the best performance with a hydrogen peroxide production rate of ≈120 m m g −1 h −1 , outperforming control samples with either larger or smaller heterojunction coverages and most reported MOF based photocatalysts in similar reaction systems.
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