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Descriptor for C2N-Supported Single-Cluster Catalysts in Bifunctional Oxygen Evolution and Reduction Reactions

Pan, J.; Li, M.; Filot, I.A.W.; Wang, H.; Hensen, E.J.M.; Zhang, L.

Journal article 2024 Open access
22 Citations Scopus
References Not reported by Scopus
Yes Open access Hybrid OA

Abstract

High Resolution Image Download MS PowerPoint Slide Developing highly active cluster catalysts for the bifunctional oxygen evolution reaction (OER) and oxygen reduction reaction (ORR) is significant for future renewable energy technology. Here, we employ first-principles calculations combined with a genetic algorithm to explore the activity trends of transition metal clusters supported on C 2 N. Our results indicate that the supported clusters, as bifunctional catalysts for the OER and the ORR, may outperform single-atom catalysts. In particular, the C 2 N-supported Ag 6 cluster exhibits outstanding bifunctional activity with low overpotentials. Mechanistic analysis indicates that the activity of the cluster is related to the number of atoms in the active site as well as the interaction between the intermediate and the cluster. Accordingly, we identify a descriptor that links the intrinsic properties of the clusters with the activity of both the OER and the ORR. This work provides guidelines and strategies for the rational design of highly efficient bifunctional cluster catalysts.

Abstract from OpenAlex , checked 2026-06-30.

Citation

Pan, J.; Li, M.; Filot, I.A.W.; Wang, H.; Hensen, E.J.M.; Zhang, L. Descriptor for C2N-Supported Single-Cluster Catalysts in Bifunctional Oxygen Evolution and Reduction Reactions. J. Phys. Lett. 2024, 15 (7), 2066-2074. 10.1021/acs.jpclett.3c03573

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