4.7 Article

A novel 2D/1D core-shell heterostructures coupling MOF-derived iron oxides with ZnIn2S4 for enhanced photocatalytic activity

期刊

JOURNAL OF HAZARDOUS MATERIALS
卷 392, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.jhazmat.2020.122500

关键词

Metal organic framework; Pyrolysis; Core-shell; Photocatalysis

资金

  1. National Natural Science Foundation of China [21703019, 21876015, 51702025]
  2. Natural Science Foundation of Jiangsu Province-Excellent Youth Foundation [BK20190102]

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1D spindle-like iron oxides with controllable phase were synthesized by using MIL-88A-templated pyrolysis under different atmospheres, thermal annealing in N-2 to obtain Fe3O4 and in air to obtain alpha-Fe2O3. Then, 2D/1D core-shell heterostructures (ZnIn2S4@Fe3O4 and ZnIn2S4@alpha-Fe2O3) were constructed by in-situ self-assembly strategy. Characterizations indicated that the 2D ultra-thin ZnIn2S4 shell with 0.3 mu m was homogeneously coated on the surface of 1D Fe3O4/alpha-Fe2O3 core with 1 and ZnIn2S4@Fe3O4 exhibited higher BET surface area (84.5 m(2) g(-1)) compared with ZnIn2S4@alpha-Fe2O3 (17.8 m(2) g(-1)), providing more exposed active sites and larger contact area. The ZnIn2S4@Fe3O4-5 showed the best photocatalytic activity of RhB degradation as compared to ZnIn2S4, Fe3O4 and ZnIn2S4@alpha-Fe2O3. In addition, the degradation rates of MB, BPA and MO over ZnIn2S4@Fe3O4 were much higher than that of ZnIn2S4@alpha-Fe2O3. The proposed photocatalytic mechanism was also discussed: the Fe3O4 as an electron acceptor caused Fe3+/Fe2+ cycle in ZnIn2S4@Fe3O4 and ZnIn2S4@alpha-Fe2O3 followed the Z-scheme mechanism.

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