2020 Virtual AIChE Annual Meeting
(36d) Operando study of CO2 Hydrogenation Reaction Catalyzed By in2O3-Based Catalysts
Authors
We found that, under catalytically relevant conditions, bare In2O3 can be largely reduced and form an (In metal + InOx)/In2O3 (0 < x < 1.5) core-shell structure. When loaded onto a semiconducting/insulating support, the In2O3 domains were progressively reduced and formed InOx at the topmost region under elevated temperatures, but with less tendency to form metallic In, a primary surface species that leads to catalyst deactivation. Detailed ex situ TEM study of spent catalyst suggests reconstructed In2O3 at the subsurface. The observation of key reaction intermediates, i.e., carbonate, formate (HCOO-), and methoxyl (CH3O-), as well as their inter-conversions under reaction conditions, offers an extra handle to mechanistically probe the CO2 hydrogenation process. The APXPS data analysis was found in remarkable correlation with the practical catalysis.
Reference
- Martin, O. et al. Chem. Int. Ed. 2016, 55, 6261
- Chen, T. Y. et al. ACS Catal. 2019, 9, 8785