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首页> 外文期刊>Surface Science >Mechanism for CO_2 electroreduction into C_2 products at the low overpotential: Theoretical insights from an improved electrode/solution interface model
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Mechanism for CO_2 electroreduction into C_2 products at the low overpotential: Theoretical insights from an improved electrode/solution interface model

机译:CO_2电耦合到C_2产品的机制在低过电位下的C_2产品:改进电极/解决方案界面模型的理论见解

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摘要

A CO coverage-dependent Cu(100)/H2O interface model is used to study electroreduction pathways of CO2 to-wards C2H4 and CH3CH2OH products at the low overpotential with the aim of solving the long disputing on production mechanisms of C-2 products. Our results show that previously predicted dimer OCCO may be not a viable intermediate and C-C coupling pathway may occur through reactions of COH with CO into COCOH and COH dimerization into COHCOH species on Cu(100). Thereby, the optimal CO2 electroduction pathways towards C2H4 and CH3CH2OH products can be presented. It is found that present defined CCHOH and CHCOH pathways both are favorable and may be able to occur parallelly during CO2 electroreduction into C-2 products, naturally explaining why C-2 products can be observed experimentally at low overpotentials on Cu(100). Thereinto, common CH2CH2OH and CHCH2 species can be formed in the parallel pathways wherein CHCH2 intermediate can directly lead to C2H4 product through proton-electron transfer process and CH2CH2OH species is the direct precursor into CH3CH2OH product. Mechanistic understanding towards the productions of C-2 products on Cu (100) will open up routes to productions of high-energy fuels and provide significant insights into the design of highly active CO2 electroreduction catalysts operated at low overpotentials.
机译:CO覆盖依赖性Cu(100)/ H2O界面模型用于研究CO 2往病房C2H4和CH3CH2OH产品的电吞路径,以求解C-2产品的生产机制的长争议。我们的结果表明,先前预测的二聚体含量不是可行的中间体,并且可以通过COCOH与COCOH和COH二聚化反应在Cu(100)上的COHCOH物种中的COH和COH二聚化反应来发生C-C偶联通路。由此,可以提出朝向C2H4和CH 3 CH 2 OH产物的最佳CO 2电渗透路径。发现存在的所定义的CCHOH和CHCOH途径既有利,也可以在CO 2电导过程中并联发生,进入C-2产物,自然地解释为什么可以在Cu(100)上的低过电位下实验观察C-2产物。其中,可以在平行路径中形成普通CH 2 CH 2 OH和CHCH2物质,其中CHCH2中间体可以通过质子 - 电子转移方法直接导致C2H4产物,CH 2 CH 2 OH物质是CH 3 CH 2 OH产物的直接前体。在Cu(100)上的C-2产品制作的机械理解将打开高能量燃料的生产线,并对在低过电位下操作的高活性CO2电催化剂的设计中提供显着的见解。

著录项

  • 来源
    《Surface Science》 |2021年第3期|121782.1-121782.8|共8页
  • 作者

    Ou Lihui; He Zixi;

  • 作者单位

    Hunan Univ Arts & Sci Hunan Prov Engn Res Ctr Electroplating Wastewater Hunan Prov Key Lab Water Treatment Funct Mat Coll Chem & Mat Engn Hunan Prov Cooperat Innovat Changde 415000 Peoples R China;

    Hunan Univ Arts & Sci Hunan Prov Engn Res Ctr Electroplating Wastewater Hunan Prov Key Lab Water Treatment Funct Mat Coll Chem & Mat Engn Hunan Prov Cooperat Innovat Changde 415000 Peoples R China;

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

    CO electroreduction; C-2 products; C-C coupling; Low overpotential; Interface model;

    机译:CO Electored;C-2产品;C-C耦合;低过电容;界面模型;

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