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A DFT study and microkinetic analysis of CO oxidation to dimethyl oxalate over Pd stripe and Pd single atom-doped Cu(111) surfaces

机译:在Pd条纹和Pd单原子掺杂Cu(111)表面上的Co氧化与草酸二甲酯的DFT研究和微酮谱分析

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摘要

Developing low amount and high catalytic performance of Pd-based catalysts are vital for the oxidation of CO to dimethyl oxalate (DMO) in industry. In this study, Pd stripe and Pd single atom-doped Cu(111) surfaces are constructed via Pd substituting four striped Cu atoms and single Cu atom of surface layer over the Cu(111) surface, respectively, namely Pd4Cu8/Cu(111) and Pd-1-Cu(111) surfaces, and two possible reaction pathways related to DMO synthesis have been studied on two surfaces employing density functional theory (DFT) calculation in combination with microkinetic analysis and subsequently compared with the cases of Pd(111) and Pd-ML/Cu(111). The results show that COOCH3-COOCH3 coupling pathway is superior to COOCH3-CO on Pd4Cu8/Cu(111) and Pd-1-Cu(111). Moreover, the Pd-1-Cu(111) surface shows highest catalytic activity for DMO generation, followed by the Pd4Cu8/Cu(111), the Pd(111) and the Pd-ML/Cu(111) surface. Additionally, Pd4Cu8/Cu(111) and Pd-1-Cu(111) surfaces exhibit high DMO selectivity. Thus, Pd stripe and Pd single atom-doped Cu(111) surfaces are thought to be prospective candidates to improve the catalytic performance of noble Pd and reduce its usage for CO oxidation to DMO.
机译:Pd基催化剂的较低量和高催化性能对于工业中的CO至二甲酯(DMO)氧化至关重要。在该研究中,Pd条纹和Pd单个原子掺杂Cu(111)表面通过Pd分别在Cu(111)表面上以替代四条纹的Cu原子和表面层的单个Cu原子而构建,即Pd4cu8 / Cu(111)和PD-1-Cu(111)表面和与DMO合成相关的两种可能的反应途径已经在采用密度官能理论(DFT)计算的两个表面上与微酮型分析组合,随后与PD(111)的情况相比,和pd-ml / cu(111)。结果表明,Cooch3-Cooch3偶联途径优于Coch3-Co,PD4Cu8 / Cu(111)和Pd-1-Cu(111)。此外,PD-1-Cu(111)表面显示出DMO产生的最高催化活性,其次是PD4Cu8 / Cu(111),Pd(111)和Pd-ml / Cu(111)表面。另外,PD4Cu8 / Cu(111)和PD-1-Cu(111)表面表现出高DMO选择性。因此,Pd条纹和Pd单个原子掺杂的Cu(111)表面被认为是前瞻性候选者,以改善惰性Pd的催化性能,并降低其对DMO的氧化的用法。

著录项

  • 来源
    《Applied Surface Science》 |2019年第15期|1057-1067|共11页
  • 作者单位

    Taiyuan Univ Technol Minist Educ & Shanxi Prov Key Lab Coal Sci & Technol Taiyuan 030024 Shanxi Peoples R China;

    Taiyuan Univ Technol Coll Chem & Chem Engn Taiyuan 030024 Shanxi Peoples R China|Univ Wyoming Dept Chem & Petr Engn 1000 E Univ Ave Laramie WY 82071 USA|Chinese Acad Sci Inst Coal Chem State Key Lab Coal Convers Taiyuan 030001 Shanxi Peoples R China;

    Univ Wyoming Dept Chem & Petr Engn 1000 E Univ Ave Laramie WY 82071 USA;

    Chinese Acad Sci Inst Coal Chem State Key Lab Coal Convers Taiyuan 030001 Shanxi Peoples R China;

    Taiyuan Univ Technol Minist Educ & Shanxi Prov Key Lab Coal Sci & Technol Taiyuan 030024 Shanxi Peoples R China;

    Taiyuan Univ Technol Minist Educ & Shanxi Prov Key Lab Coal Sci & Technol Taiyuan 030024 Shanxi Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Pd4Cu8/Cu(111); Pd-1-Cu(111); CO oxidation to DMO; DFT; Microkinetic analysis; Activity;

    机译:PD4CU8 / Cu(111);PD-1-Cu(111);与DMO的共同氧化;DFT;微酮分析;活动;

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