Valence restrictive metal-support interaction for boosting catalytic activity of Rh/CeO<sub>2</sub> in CO<sub>2</sub> hydrogenation.

Yu, Ze-Kai; Jiang, Mingxiang; Dai, Sheng; Zhan, Wangcheng; Wang, Zhi-Qiang; Gong, Xue-Qing · Nat Commun · 2025

basic_science · Level V

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Abstract

Metal-support interactions (MSI) profoundly modulate the catalytic properties of supported nanometal catalysts. However, a comprehensive understanding of their underlying mechanisms largely remains elusive. In this work, we propose a novel valence restrictive metal-support interaction (VR-MSI) through systematic theoretical and experimental studies of the various Rh-modified CeO<sub>2</sub>(111) surfaces. It reveals that small Rh clusters are oxidized by the CeO<sub>2</sub> support and constantly maintain the +2 valence state, thus establishing a clear correlation between their sizes and the electronic properties for each Rh atom. The VR-MSI effect can therefore favor the adsorptions of negatively charged species at small supported Rh clusters through local electrostatic interactions, and for CO<sub>2</sub> hydrogenation reactions, the occurrence of active hydride species (H<sup>-</sup>) can be effectively promoted by the supported Rh nanocluster toward highly selective and active CO<sub>2</sub> hydrogenation to CH<sub>4</sub>. This discovery broadens our understanding of the MSI effect and the mechanism of selective hydrogenation in heterogeneous catalysis, offering new insights into the rational design of advanced hydrogenation catalysts.