4.7 Article

Enhanced photocatalytic nitrogen fixation on Cu2O clusters/MIL-100 (Fe) heterojunction

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APPLIED SURFACE SCIENCE
卷 640, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.apsusc.2023.158443

关键词

MIL-100(Fe); Cu2O clusters; Photocatalytic nitrogen fixation; Surface interaction; Type-II heterojunction

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A series of Cu2O clusters/MIL-100(Fe) heterojunctions were constructed and achieved efficient nitrogen fixation performance. The formation of heterojunctions improves catalytic performance by regulating energy band structure and promoting separation of photogenerated electron-hole pairs. Cu-O surface interaction is confirmed to be the key for efficient electron transfer.
A series of Cu2O clusters/MIL-100(Fe) heterojunctions with different Cu2O mass ratios were constructed as the photocatalysts for N2 fixation. An optimal nitrogen fixation performance of 51.22 mu mol center dot g- 1 center dot h- 1 is achieved when the mass fraction of Cu2O is 20 %. Isotope analysis experiments confirmed that the nitrogen source is N2. Possible intermediate signals during photocatalytic reactions were detected by in situ DRIFTS. XPS results further confirm the formation of Cu2O/MIL-100(Fe) heterojunctions, and that the existence of Cu-O surface interactions is the key to efficient electron transfer. It is revealed that the improvement of the catalytic performance is derived from the formation of heterojunction which regulates the energy band structure as well as promotes the separation of photogenerated electron-hole pairs. This study proposes a possible mechanism of photocatalytic nitrogen fixation and emphasizes the role of surface interaction and electron transfer in type-II heterojunction in improving ni-trogen fixation performance.

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