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Boosting Electrochemical Nitrogen Reduction Performance over Binuclear Mo Atoms on N-Doped Nanoporous Graphene: A Theoretical Investigation

机译:N掺杂纳米多孔石墨烯在双核Mo原子上提高电化学氮还原性能的理论研究

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摘要

Exploration of efficient catalysts is a priority for the electrochemical nitrogen reduction reaction (NRR) in order to receive a high product yield rate and faradaic efficiency of NH3, under ambient conditions. In the present contribution, the binding free energy of N2, NNH, and NH2 were used as descriptors to screen the potential NRR electrocatalyst among different single or binuclear transition metal atoms on N-doped nanoporous graphene. Results showed that the binuclear Mo catalyst might exhibit the highest catalytic activity. Further free energy profiles confirmed that binuclear Mo catalysts possess the lowest potential determining step (hydrogenation of NH2* to NH3). The improved activities could be ascribed to a down-shift of the density of states for Mo atoms. This investigation could contribute to the design of a highly active NRR electrocatalyst.
机译:为了在环境条件下获得较高的产品收率和NH3的法拉第效率,电化学氮还原反应(NRR)的优先考虑是探索有效的催化剂。在目前的贡献中,N 2,NNH和NH 2的结合自由能用作描述子,以筛选N掺杂的纳米多孔石墨烯上不同的单个或双核过渡金属原子之间的潜在NRR电催化剂。结果表明,双核Mo催化剂可能具有最高的催化活性。进一步的自由能曲线证实,双核Mo催化剂具有最低的电势确定步骤(将NH2 *加氢成NH3)。活性的提高可以归因于Mo原子态密度的下降。这项研究可能有助于高活性NRR电催化剂的设计。

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