• Journal of Inorganic Materials
  • Vol. 35, Issue 6, 647 (2020)
Yun ZHENG1、2, Yilin CHEN1, Bifen GAO1, and Bizhou LIN1
Author Affiliations
  • 1College of Materials Science and Engineering, Huaqiao University, Xiamen 361021, China
  • 2State Key Laboratory of Photocatalysis on Energy and Environment, College of Chemistry, Fuzhou University, Fuzhou 350116, China
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    DOI: 10.15541/jim20190307 Cite this Article
    Yun ZHENG, Yilin CHEN, Bifen GAO, Bizhou LIN. Progress on Phosphorene for Photocatalytic Water Splitting[J]. Journal of Inorganic Materials, 2020, 35(6): 647 Copy Citation Text show less
    Synthesis, surface modification and heterostructure design of phosphorene-based photocatalysts for half-reactions and overall reactions of water splitting
    1. Synthesis, surface modification and heterostructure design of phosphorene-based photocatalysts for half-reactions and overall reactions of water splitting
    Band edge alignments of phosphorene at ambient condition, under 7% tensile strain along a axis and 5% tensile strain along b axis when pH=8.0[13]
    2. Band edge alignments of phosphorene at ambient condition, under 7% tensile strain along a axis and 5% tensile strain along b axis when pH=8.0[13]
    Schematic diagram of the synthetic process of BP-BM nanosheets[15]
    3. Schematic diagram of the synthetic process of BP-BM nanosheets[15]
    Schematic illustration of the preparation of few-layered BP nanosheets by a solvothermal process[16]
    4. Schematic illustration of the preparation of few-layered BP nanosheets by a solvothermal process[16]
    Schematic diagram for the visible and NIR light driven photocatalytic H2 evolution reaction over BP/CN catalyst[29]
    5. Schematic diagram for the visible and NIR light driven photocatalytic H2 evolution reaction over BP/CN catalyst[29]
    Schematic illustration of the mechanism of CdS and BP hybrid catalyst for photocatalytic water splitting[34]
    6. Schematic illustration of the mechanism of CdS and BP hybrid catalyst for photocatalytic water splitting[34]
    Schematic diagrams of photocatalytic H2 production using BP-Au/LTO under (a)visible and (b)NIR light irradiation[39]
    7. Schematic diagrams of photocatalytic H2 production using BP-Au/LTO under (a)visible and (b)NIR light irradiation[39]
    Schematic diagram of Z-scheme photocatalytic water splitting system using BP/BiVO4 under visible light irradiation[45]
    8. Schematic diagram of Z-scheme photocatalytic water splitting system using BP/BiVO4 under visible light irradiation[45]
    (a) Electron spin resonance spectra of ·O2- radicals over BP/CN hybrid with visible-light irradiation, and (b) time-dependent degradation of nitroblue tetrazolium solution to detect ·O2- evolution over BP/CN hybrid under visible-light irradiation[46]
    9. (a) Electron spin resonance spectra of ·O2- radicals over BP/CN hybrid with visible-light irradiation, and (b) time-dependent degradation of nitroblue tetrazolium solution to detect ·O2- evolution over BP/CN hybrid under visible-light irradiation[46]
    Yun ZHENG, Yilin CHEN, Bifen GAO, Bizhou LIN. Progress on Phosphorene for Photocatalytic Water Splitting[J]. Journal of Inorganic Materials, 2020, 35(6): 647
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