JOURNAL ARTICLE

Deciphering Local Structural Complexity in Zn/Ga-ZrO2 CO2 Hydrogenation Catalysts

Davide SalussoPierfrancesco TicaliDragos StoianSen WangWeibin FanSara MorandiElisa BorfecchiaSilvia Bordiga

Year: 2024 Journal:   The Journal of Physical Chemistry Letters Vol: 15 (16)Pages: 4494-4500   Publisher: American Chemical Society

Abstract

In the last few decades, massive effort has been expended in heterogeneous catalysis to develop new materials presenting high conversion, selectivity, and stability even under high-temperature and high-pressure conditions. In this context, CO2 hydrogenation is an interesting reaction where the catalyst local structure is strongly related to the development of an active and stable material under hydrothermal conditions at T/P > 300 °C/30 bar. In order to clarify the relationship between catalyst local ordering and its activity/stability, we herein report a combined laboratory and synchrotron investigation of aliovalent element (Ce/Zn/Ga)-containing ZrO2 matrixes. The results reveal the influence of similar average structures with different short-range orderings on the catalyst properties. Moreover, a further step toward the comprehension of the oxygen vacancy formation mechanism in Ce- and Ga-ZrO2 catalysts is reported. Finally, the reported results illustrate a robust method to guide local structure determination and ultimately help to avoid overuse of the "solid solution" definition.

Keywords:
Catalysis Materials science Hydrothermal circulation Context (archaeology) Vacancy defect Structural stability Selectivity Chemical engineering Synchrotron Solid solution Crystallography Chemistry Metallurgy Organic chemistry Physics

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Citation History

Topics

Catalytic Processes in Materials Science
Physical Sciences →  Materials Science →  Materials Chemistry
Catalysts for Methane Reforming
Physical Sciences →  Chemical Engineering →  Catalysis
Carbon dioxide utilization in catalysis
Physical Sciences →  Chemical Engineering →  Process Chemistry and Technology
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