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揭示双原子催化剂上用于CO/CO₂还原反应的C-C偶联机制:CO加氢的关键作用。

Unraveling the C-C Coupling Mechanism on Dual-Atom Catalysts for CO/CO Reduction Reaction: The Critical Role of CO Hydrogenation.

作者信息

He Minghao, Jiang Chong-Hui, Yan Hui-Min, Wang Guofeng, Wang Yang-Gang

机构信息

Key Laboratory of Functional Inorganic Material Chemistry, Ministry of Education, School of Chemistry and Materials Science, Heilongjiang University, Harbin 150080, China.

Department of Chemistry, Southern University of Science and Technology, Shenzhen 518055, Guangdong, China.

出版信息

J Phys Chem Lett. 2025 Jan 9;16(1):324-332. doi: 10.1021/acs.jpclett.4c03123. Epub 2024 Dec 27.

DOI:10.1021/acs.jpclett.4c03123
PMID:39726371
Abstract

The electrochemical reduction reaction (RR) of CO to high value multicarbon products is highly desirable for carbon utilization. Dual transition metal atoms dispersed by N-doped graphene are able to be highly efficient catalysts for this process due to the synergy of the bimetallic sites for C-C coupling. In this work, we screened homonuclear dual-atom catalysts dispersed by N-doped graphene to investigate the potential in CO reduction to C products by employing density functional theory calculations. We have demonstrated that the two adsorbed CO species on bimetallic sites cannot directly couple unless one of the CO molecules is hydrogenated. All the dual metal atom catalysts prefer a similar coupling mechanism, i.e., the asymmetric coupling of *CO on the bridged site and *CHO on the top site, while the Ni and Cu catalysts exhibit much better performance with moderate adsorption energies and low energy barriers. The enhanced activities are attributed to the decrease of the energy levels of *CO 2p states that weakens the metal-C bonding and thus facilitates the feasible C-C coupling with both low reaction energies and low barriers. These insights have revealed the significant role of the hydrogenation of CO species prior to the coupling step and may provide a theoretical perspective to understand the generation of C products in the CO/CORR.

摘要

将CO电化学还原反应(RR)转化为高价值多碳产物对于碳的利用非常有意义。由于双金属位点对C-C偶联的协同作用,N掺杂石墨烯分散的双过渡金属原子能够成为该过程的高效催化剂。在这项工作中,我们通过密度泛函理论计算筛选了N掺杂石墨烯分散的同核双原子催化剂,以研究其在将CO还原为含碳产物方面的潜力。我们已经证明,双金属位点上吸附的两种CO物种不能直接偶联,除非其中一个CO分子被氢化。所有双金属原子催化剂都倾向于类似的偶联机制,即桥位上的CO与顶位上的CHO的不对称偶联,而Ni和Cu催化剂在具有适度吸附能和低能垒的情况下表现出更好的性能。活性的增强归因于*CO 2p态能级的降低削弱了金属-C键,从而促进了具有低反应能和低能垒的可行C-C偶联。这些见解揭示了CO物种在偶联步骤之前氢化的重要作用,并可能为理解CO/阴极还原反应中含碳产物的生成提供理论视角。

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Unraveling the C-C Coupling Mechanism on Dual-Atom Catalysts for CO/CO Reduction Reaction: The Critical Role of CO Hydrogenation.揭示双原子催化剂上用于CO/CO₂还原反应的C-C偶联机制:CO加氢的关键作用。
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