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Single tungsten atom supported on N-doped graphyne as a high-performance electrocatalyst for nitrogen fixation under ambient conditions

机译:单钨原子在N掺杂的Graphyne上负载,作为环境条件下的氮固定的高性能电催化剂

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摘要

Electrochemical reduction of dinitrogen molecules (N-2) to value-added ammonia by using renewable electricity under mild conditions is regarded as a sustainable and promising strategy for N-2 fixation. However, the lack of efficient, robust and inexpensive electrocatalysts for such electrochemical reduction has prevented its wide application. Herein, we report a novel single-atom catalyst, i.e., a single tungsten (W) atom anchored on N-doped graphyne (W@N-doped graphyne) as a highly efficient and low-cost electrocatalyst for the N-2 reduction reaction. The inert N?N triple bond can be sufficiently activated when an N-2 molecule is adsorbed on the W atom. A single atom of W coordinated with one N atom (doping into an sp-hybridized carbon atom) exhibits the highest catalytic performance with ultra-low onset potential of 0.29 V for N-2 reduction reactions. The distal mechanism' is identified as the most favourable catalytic pathway. Moreover, the improved electrical conductivity of W@N-doped graphyne compared to that of pristine graphyne can ensure better electron transfer efficiency during the reduction processes. Our study provides a novel electrocatalyst with excellent catalytic performance for electrochemical reduction of N-2 to NH3 under ambient conditions.
机译:通过使用温和条件下使用可再生电力的再生电力对增值氨的电化学还原被认为是N-2固定的可持续和有希望的策略。然而,对于这种电化学还原的缺乏有效,鲁棒和廉价的电催化剂已经阻止了广泛的应用。在此,我们报告一种新型单原子催化剂,即锚定在N掺杂的石墨酰基(W掺杂石墨酰基)上的单钨(W)原子,作为N-2还原反应的高效和低成本的电催化剂。当N-2分子吸附在W原子上时,可以充分地激活惰性NαN三键。用一个n原子(掺杂到Sp杂交的碳原子)配位的单个原子表现出最高的催化性能,具有0.29V的超低发作潜力,对于N-2还原反应。远端机制被鉴定为最有利的催化途径。此外,与原始石墨因子相比,W掺杂石墨酰基的改善的电导率可以在减少过程中确保更好的电子转移效率。我们的研究提供了一种新型电催化剂,具有优异的催化性能,用于在环境条件下电化学减少N-2至NH 3。

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  • 作者单位

    Queensland Univ Technol Sch Chem Phys &

    Mech Engn Sci &

    Engn Fac Gardens Point Campus Brisbane Qld 4001 Australia;

    Queensland Univ Technol Sch Chem Phys &

    Mech Engn Sci &

    Engn Fac Gardens Point Campus Brisbane Qld 4001 Australia;

    Queensland Univ Technol Sch Chem Phys &

    Mech Engn Sci &

    Engn Fac Gardens Point Campus Brisbane Qld 4001 Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理学;化学;
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