Literature DB >> 32298119

Descriptor-Based Design Principle for Two-Dimensional Single-Atom Catalysts: Carbon Dioxide Electroreduction.

Hao Yuan1,2, Zhenyu Li1, Xiao Cheng Zeng2, Jinlong Yang1.   

Abstract

Single-atom catalysis has recently emerged as a promising approach for catalyzing the carbon dioxide reduction reaction (CO2RR). In this study, we present a principle for designing active single-atom catalysts (SACs) for CO2RR. We systematically examine totally 24 transition metals supported by a graphitic carbon nitride (g-CN) monolayer and find that their catalytic activities are highly correlated with the adsorption free energies of two intermediate species (OH and OCH). We then identify two important intrinsic descriptors, namely, the number of electrons in the outmost d-shell and the enthalpy of vaporization of the transition metal. Test calculations on transition metals supported by a C2N monolayer indicate that both descriptors are quite universal for SACs of CO2RR. Based on these results, we show that Ni@g-CN, Cu@g-CN, and Co@C2N are promising SACs for CO2RR. This study offers an effective principle for designing highly active SACs for CO2RR on the basis of intrinsic properties of transition metals.

Entities:  

Year:  2020        PMID: 32298119     DOI: 10.1021/acs.jpclett.0c00676

Source DB:  PubMed          Journal:  J Phys Chem Lett        ISSN: 1948-7185            Impact factor:   6.475


  2 in total

1.  Supported Bimetallic Trimers Fe2M@NG: Triple-Atom Catalysts for CO2 Electroreduction.

Authors:  Bing Han; Haihong Meng; Fengyu Li
Journal:  ACS Omega       Date:  2022-04-25

2.  Catalytic Potential of Post-Transition Metal Doped Graphene-Based Single-Atom Catalysts for the CO2 Electroreduction Reaction.

Authors:  Stephanie Lambie; Jian Liang Low; Nicola Gaston; Beate Paulus
Journal:  Chemphyschem       Date:  2022-03-23       Impact factor: 3.520

  2 in total

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