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Selective acetylene hydrogenation over single metal atoms supported on Fe3O4(001): A first-principle study

机译:在Fe3O4(001)支持的单金属原子上选择性乙炔氢化:第一原理研究

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摘要

Supported single-atom catalysts (SACs) have gained increasing attention for improved catalytic activity and selectivity for industrially relevant reactions. In this study, we explore the hydrogenation of acetylene over single Pt, Ru, Rh, Pd, and Ir atoms supported on the Fe3O4(001) surface using density functional theory calculations. The thermodynamic profile of H diffusion is significantly modified by the type of single metal atoms used, suggesting that H spillover from the single atom dopant to the Fe3O4(001) surface is favored and will likely lead to high H coverages of the functioning catalyst. Correspondingly, as the surface H coverage increases, the important desorption step of ethylene becomes energetically competitive against the detrimental hydrogenation steps of ethylene to ethane. A kinetic model is employed to explore how the activity and selectivity of SACs toward ethylene production change as a function of mass of the catalyst loaded into a flow reactor. Overall, we show that the selectivity of SACs toward ethylene production can be tuned by considering the proper type of metal and controlling the redox state of the support.
机译:支持的单原子催化剂(SAC)增加了改善催化活性和在工业相关反应的选择性方面的关注。在该研究中,我们使用密度函数理论计算探讨了在Fe3O4(001)表面上的单Pt,Ru,Rh,Pd和Ir原子上的乙炔的氢化。通过所用的单个金属原子的类型显着改变H扩散的热力学曲线,表明H溢出从单个原子掺杂到Fe3O4(001)表面的掺杂剂,并且可能导致功能催化剂的高H覆盖。相应地,随着表面H覆盖率的增加,乙烯的重要解吸步骤对乙烯对乙烯的有害氢化步骤具有能量竞争力。使用动力学模型来探讨囊的活性和选择性如何随着催化剂的质量作为负载到流量反应器的函数的函数。总体而言,我们表明,可以通过考虑适当类型的金属和控制氧化还原状态来调整SACS对乙烯生产的选择性。

著录项

  • 来源
    《The Journal of Chemical Physics》 |2020年第15期|共9页
  • 作者单位

    Pacific Northwest Natl Lab Basic &

    Appl Mol Fdn Phys &

    Computat Sci Directorate Richland WA 99352 USA;

    Pacific Northwest Natl Lab Basic &

    Appl Mol Fdn Phys &

    Computat Sci Directorate Richland WA 99352 USA;

    Pacific Northwest Natl Lab Basic &

    Appl Mol Fdn Phys &

    Computat Sci Directorate Richland WA 99352 USA;

    Pacific Northwest Natl Lab Basic &

    Appl Mol Fdn Phys &

    Computat Sci Directorate Richland WA 99352 USA;

    Pacific Northwest Natl Lab Basic &

    Appl Mol Fdn Phys &

    Computat Sci Directorate Richland WA 99352 USA;

    Pacific Northwest Natl Lab Basic &

    Appl Mol Fdn Phys &

    Computat Sci Directorate Richland WA 99352 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;
  • 关键词

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