Title : A stable low-temperature H2-production catalyst by crowding Pt on α-MoC.

Pub. Date : 2021 Jan

PMID : 33473229






3 Functional Relationships(s)
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1 Here we demonstrate that the structure (Pt1-Ptn)/alpha-MoC, where isolated platinum atoms (Pt1) and subnanometre platinum clusters (Ptn) are stabilized on alpha-molybdenum carbide (alpha-MoC), catalyses the WGS reaction even at 313 kelvin, with a hydrogen-production pathway involving direct carbon monoxide dissociation identified. Platinum zinc finger protein 77 Homo sapiens
2 Here we demonstrate that the structure (Pt1-Ptn)/alpha-MoC, where isolated platinum atoms (Pt1) and subnanometre platinum clusters (Ptn) are stabilized on alpha-molybdenum carbide (alpha-MoC), catalyses the WGS reaction even at 313 kelvin, with a hydrogen-production pathway involving direct carbon monoxide dissociation identified. Platinum zinc finger protein 77 Homo sapiens
3 Here we demonstrate that the structure (Pt1-Ptn)/alpha-MoC, where isolated platinum atoms (Pt1) and subnanometre platinum clusters (Ptn) are stabilized on alpha-molybdenum carbide (alpha-MoC), catalyses the WGS reaction even at 313 kelvin, with a hydrogen-production pathway involving direct carbon monoxide dissociation identified. Platinum zinc finger protein 77 Homo sapiens