[ACIE] 蒸汽辅助Ru-In催化剂上CO2选择性加氢制乙醇

文摘   2024-07-13 11:45   美国  

Abstract

Multicomponent catalysts can be designed to synergistically combine reaction intermediates at interfacial active sites, but restructuring makes systematic control and understanding of such dynamics challenging. We here unveil how reducibility and mobility of indium oxide species in Ru-based catalysts crucially control the direct, selective conversion of CO2 to ethanol. When uncontrolled, reduced indium oxide species occupy the Ru surface, leading to deactivation. With the addition of steam as a mild oxidant and using porous polymer layers to control In mobility, Ru-In2O3 interface sites are stabilized, and ethanol can be produced with superior overall selectivity (70%, rest CO). Our work highlights how engineering of bifunctional active ensembles enables cooperativity and synergy at tailored interfaces, which unlocks unprecedented performance in heterogeneous catalysts.

C. Zhou, A. Aitbekova, G. Liccardo, J. Oh, M. Stone, E.J. McShane, B. Werghi, S. Nathan, C. Song, J. Ciston, K. Bustillo, A.S. Hoffman, J. Hong, J. Perez-Aguilar, S. Bare, M. Cargnello, Steam-Assisted Selective CO2 Hydrogenation to Ethanol over Ru-In Catalysts, Angewandte Chemie International Edition, n/a (2024) e202406761. DOI: 10.1002/anie.202406761.


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