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Hydrogen evolution reaction on in-plane platinum and palladium dichalcogenides via single-atom doping

机译:通过单原子掺杂在平面内铂和钯二巯基甲基磷酸的氢进化反应

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摘要

Hydrogen Energy Publications LLCSearching for the catalysts with excellent catalytic activity and high chemical stability is the key to achieve large-scale production of hydrogen (H2) through hydrogen evolution reaction (HER). Two-dimensional (2D) platinum and palladium dichalcogenides with extraordinary electrical properties have emerged as the potential candidate for HER catalysts. Here, chemical stability, HER electrocatalytic activity, and the origin of improved HER performance of Pt/Pd-based dichalcogenides with single-atom doping (B, C, N, P, Au, Ag, Cu, Co, Fe, Ni, Zn) and vacancies are explored by first-principles calculations. The calculated defect formation energy reveals that most defective structures are thermodynamically stable. Hydrogen evolution performance on basal plane is obviously improved by single-atoms doping and vacancies. Particularly, Zn-doped and Te vacancy PtTe2 have a GH value close to zero. Moreover, defect engineering displays a different performance on HER catalytic activity in sulfur group elements, in order of S < Te < Se in Pd-based chalcogenides, and S < Se < Te in Pt-based chalcogenides. The origin of improved hydrogen evolution performance is revealed by electronic structure and charge transfer. Our findings of the highly activating defective systems provide a theoretical basis for HER applications of platinum and palladium dichalcogenides.
机译:氢能出版物LLCS研究具有优异的催化活性和高化学稳定性的催化剂是通过氢进化反应(她)实现大规模生产氢气(H2)的关键。二维(2D)铂和钯二巯基甲基物具有非凡的电性质,作为催化剂的潜在候选物。在此,化学稳定性,电催化活性和改善其具有单射门掺杂的Pt / Pd的二甲烷基的性能的起源(B,C,N,P,Au,Ag,Cu,Co,Fe,Ni,Zn )通过第一原理计算探索的空缺。计算的缺陷形成能量揭示了大多数有缺陷的结构是热力学上稳定的。通过单个原子掺杂和空位显然改善了基底平面上的氢进化性能。特别地,Zn掺杂和TE空位PTTE2具有接近零的GH值。此外,缺陷工程在硫基团中的催化活性上显示出不同的性能,按照基于PD的硫族化合物的S

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  • 来源
    《International journal of hydrogen energy》 |2021年第35期|18294-18304|共11页
  • 作者单位

    State Key Laboratory of Information Photonics and Optical Communications and School of Electronic Engineering Beijing University of Posts and Telecommunications Beijing 100876 China;

    State Key Laboratory of Information Photonics and Optical Communications and School of Electronic Engineering Beijing University of Posts and Telecommunications Beijing 100876 China;

    State Key Laboratory of Information Photonics and Optical Communications and School of Electronic Engineering Beijing University of Posts and Telecommunications Beijing 100876 China;

    State Key Laboratory of Information Photonics and Optical Communications and School of Electronic Engineering Beijing University of Posts and Telecommunications Beijing 100876 China;

    State Key Laboratory of Information Photonics and Optical Communications and School of Electronic Engineering Beijing University of Posts and Telecommunications Beijing 100876 China;

    State Key Laboratory of Computer Architecture Institute of Computing Technology Chinese Academy of Sciences Beijing 100190 China;

    State Key Laboratory of Information Photonics and Optical Communications and School of Electronic Engineering Beijing University of Posts and Telecommunications Beijing 100876 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Density functional theory; Hydrogen evolution reaction; Platinum and palladium dichalcogenides; Single-atom doping;

    机译:密度函数理论;氢气进化反应;铂和钯二均甲基化物;单原子掺杂;

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