首页> 中文期刊> 《纳微快报:英文版》 >In Situ Preparation and Analysis of Bimetal Co?doped Mesoporous Graphitic Carbon Nitride with Enhanced Photocatalytic Activity

In Situ Preparation and Analysis of Bimetal Co?doped Mesoporous Graphitic Carbon Nitride with Enhanced Photocatalytic Activity

         

摘要

A novel photocatalyst of mesoporous graphitic carbon nitride(g-C3N4) co-doped with Co and Mo(Co/Mo-MCN) has been one-pot synthesized via a simple template-free method;cobalt chloride and molybdenum disulfide were used as the Co and Mo sources, respectively. The characterization results evidently indicate that molybdenum disulfide functions as Mo sources to incorporate Mo atoms in the framework of g-C3N4 and as a catalyst for promoting the decomposition of g-C3N4, resulting in the creation of mesopores. The obtained Co/Mo-MCN exhibited a significant enhancement of the photocatalytic activity in H2 evolution(8.6 times) and Rhodamine B degradation(10.1 times) under visible light irradiation compared to pristine g-C3N4. Furthermore, density functional theory calculations were applied to further understand the photocatalytic enhancement mechanism of the optical absorption properties at the atomic level after Co-or Mo-doping. Finite-di erence time-domain simulations were performed to evaluate the e ect of the mesopore structures on the light absorption capability. The results revealed that both the bimetal doping and the mesoporous architectures resulted in an enhanced optical absorption;this phenomenon was considered to have played a critical role in the improvement in the photocatalytic performance of Co/Mo-MCN.

著录项

  • 来源
    《纳微快报:英文版》 |2019年第1期|P.175-190|共16页
  • 作者单位

    [1]School of Chemistry and Chemical Engineering;

    Harbin Institute of Technology;

    92 West Dazhi Street;

    Nan Gang District;

    Harbin 150001;

    People’s Republic of China;

    [2]Key Laboratory of Aerospace Thermophysics;

    Ministry of Industry and Information Technology;

    Harbin Institute of Technology;

    92 West Dazhi Street;

    Nan Gang District;

    Harbin 150001;

    People’s Republic of China;

    [1]School of Chemistry and Chemical Engineering;

    Harbin Institute of Technology;

    92 West Dazhi Street;

    Nan Gang District;

    Harbin 150001;

    People’s Republic of China;

    [1]School of Chemistry and Chemical Engineering;

    Harbin Institute of Technology;

    92 West Dazhi Street;

    Nan Gang District;

    Harbin 150001;

    People’s Republic of China;

    [1]School of Chemistry and Chemical Engineering;

    Harbin Institute of Technology;

    92 West Dazhi Street;

    Nan Gang District;

    Harbin 150001;

    People’s Republic of China;

    [1]School of Chemistry and Chemical Engineering;

    Harbin Institute of Technology;

    92 West Dazhi Street;

    Nan Gang District;

    Harbin 150001;

    People’s Republic of China;

    [1]School of Chemistry and Chemical Engineering;

    Harbin Institute of Technology;

    92 West Dazhi Street;

    Nan Gang District;

    Harbin 150001;

    People’s Republic of China;

    [2]Key Laboratory of Aerospace Thermophysics;

    Ministry of Industry and Information Technology;

    Harbin Institute of Technology;

    92 West Dazhi Street;

    Nan Gang District;

    Harbin 150001;

    People’s Republic of China;

    [1]School of Chemistry and Chemical Engineering;

    Harbin Institute of Technology;

    92 West Dazhi Street;

    Nan Gang District;

    Harbin 150001;

    People’s Republic of China;

  • 原文格式 PDF
  • 正文语种 CHI
  • 中图分类 催化剂;
  • 关键词

    Co-doped g-C3N4; Porous g-C3N4; Photocatalysis; Optical simulation; Light absorption intensity;

    机译:共掺杂g-C3N4;多孔g-C3N4;光催化;光学模拟;光吸收强度;
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