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Theoretical investigations of non-noble metal single-atom catalysis: Ni-1/FeOx for CO oxidation

机译:非贵金属的理论研究单原子催化的:Ni-1 / FeOx CO氧化

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摘要

Significant progress has recently been made in single-atom catalysis involving noble metals. We report here a theoretical investigation of the catalytic mechanism of CO oxidation of a non-noble metal single-atom catalyst (SAC) Ni-1/FeOx using density functional theory (DFT). The calculated results show that this new SAC Ni-1/FeOx has a high catalytic activity at room temperature for CO oxidation. CO adsorption strength is a key factor in determining catalytic activity for CO oxidation. Compared with noble-metal catalysts Pt-1/FeOx and Ir-1/FeOx, the catalytic activity for CO oxidation of Ni-1/FeOx is found to be comparable to that of Pt-1/FeOx, but is considerably higher than that of Ir-1/FeOx. Our theoretical prediction of this new non-noble meta lNi(1)/FeOx catalyst with high catalytic activity for CO oxidation at room temperature may find practical applications. The theoretical investigation provides a fundamental understanding of the catalytic mechanism of singly-dispersed surface atoms and helps to stimulate further experimental studies on highly active non-noble metal single-atom catalysts.
机译:最近已经取得显著进展单原子催化的贵金属。报告的理论研究CO氧化反应的催化机理非贵金属催化剂单原子(囊)Ni-1 / FeOx使用密度泛函理论(DFT)。计算结果表明,这种新的囊Ni-1 / FeOx催化活性高的房间对CO氧化温度。力量决定催化是一个关键因素活动对CO氧化。贵金属催化剂Pt-1 / FeOx和Ir-1 / FeOx,CO氧化的催化活性Ni-1 / FeOx可比的Pt-1 / FeOx,但要求是相当高的Ir-1 / FeOx。新的非贵金属元lNi (1) / FeOx高的催化剂对CO氧化催化活性的房间温度可能会发现实际应用。理论研究提供了基础对催化机理的理解singly-dispersed表面原子和帮助高度刺激进一步的实验研究活跃的非贵金属催化剂单原子。

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