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首页> 外文期刊>Nanoscale >In silico design of single transition metal atom anchored defective boron carbide monolayers as high-performance electrocatalysts for the nitrogen reduction reaction
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In silico design of single transition metal atom anchored defective boron carbide monolayers as high-performance electrocatalysts for the nitrogen reduction reaction

机译:单过渡金属原子锚定缺陷碳化硼单分子层作为氮还原反应的高性能电催化剂的计算机模拟设计

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Development of low-cost and high-efficiency single atom catalysts (SACs) is essential for catalyzing nitrogen reduction reactions (NRR) under ambient conditions. Current SACs suffer from low selectivity and poor activity, making it hard for them to meet the requirements of industrial applications. Here, we present a graphene-like BC3 monolayer as a substrate for single metal atoms. The catalytic performance of 4d and 5d metal atoms anchored in a vacancy containing BC3 monolayer for NRR is systematically investigated by first-principles calculations. We find that Re@VB is outstanding among all candidates, exhibiting high catalytic activity and selectivity, with a low limiting potential of −0.28 V. A new descriptor involving the active site and its environment is proposed, which has a volcano relationship with several factors in the catalytic process, establishing a link between the intrinsic properties of the active site and the catalytic performance. This study opens a new route to designing efficient catalysts with BC3 as a substrate.
机译:开发的低成本和高效率的单身原子(囊)催化剂对催化至关重要环境下氮还原反应(NRR)条件。选择性和可怜的活动,使它很难他们满足工业的需求应用程序。BC3单层金属作为单一的基质原子。金属原子在一个包含BC3空缺单层NRR是系统地调查通过采用基于计算。Re@VB突出在所有候选人中,表现出高的催化活性选择性,低限制的潜力−0.28 V。网站及其环境,提出了一个火山与几个因素之间的关系催化过程,建立联系的活性位点和内在属性催化性能。路线与BC3设计高效的催化剂作为衬底。

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