Zeolite-encapsulated single-atom catalysts for efficient CO2 conversion

Fecha de publicación

2022-01-17T00:47:27Z

2022-01-17T00:47:27Z

2021-10-29

2022-01-17T00:47:27Z

Resumen

Zeolite-supported single-atom catalysts (SACs) have emerged as a novel class of cheap and tuneable catalysts that can exhibit high activity, selectivity and stability. In this work, we conduct an extensive screening by means of density functional theory calculations to determine the usefulness of 3d, 4d and 5d transition metal (TM) SACs-supported in MFItype Silicalite-1 zeolite for CO2 conversion. Two reaction mechanisms are considered, namely the redox −direct CO2 dissociation− and associative −hydrogen-assisted CO2 dissociation− mechanisms. Early TM SACs exhibit the lowest energy barriers, which follow the redox mechanism. These energy barriers raise when going right in the periodic table up to group 10, where they become prohibitive and the associative mechanism should dominate. By also considering their resistance to aggregation, we support the use of Sc, Y, La, Ru, Rh, Ni, Pd and Pt as potentially active and stable catalysts for CO2 conversion, given their low energy barriers and strong interaction with the zeolite framework.

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Inglés

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Elsevier

Documentos relacionados

Reproducció del document publicat a: https://doi.org/10.1016/j.jcou.2021.101777

Journal of CO2 Utilization, 2021, vol. 54, num. 101777

https://doi.org/10.1016/j.jcou.2021.101777

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cc-by-nc-nd (c) Alonso et al, 2021

https://creativecommons.org/licenses/by-nc-nd/4.0/