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Cross-double dumbbell-like Pt–Ni nanostructures with enhanced catalytic performance toward the reactions of oxygen reduction and methanol oxidation

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Auteur
Gong W., Jiang Z., Wu R., Liu Y., Huang L., Hu N., Tsiakaras P., Shen P.K.
Date
2019
Language
en
DOI
10.1016/j.apcatb.2019.01.061
Sujet
Atoms
Catalytic oxidation
Cell engineering
Electrolytic reduction
Electrooxidation
Fuel cells
Methanol
Nanosheets
Nickel alloys
Oxidation
Oxygen
Platinum alloys
Bimetallic alloys
Dumbbell likes
Electro-oxidation properties
Enhanced catalytic activity
High specific surface area
High surface-to-volume ratio
Methanol oxidation reactions
Oxygen reduction reaction
Catalyst activity
Elsevier B.V.
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Résumé
Investigating on well-defined structure-engineering and atomic arrangement of fuel cell catalysts with high activity has attracted considerable research interest the last decade. Specially, unique nanostructures, which possess high surface-to-volume ratio and high atomic utilization have been emerged as promising candidate catalysts. Herein, we have successfully synthesized Pt–Ni cross double dumbbell-like nanostructures (Pt-Ni CDDNs) via a facile one-pot synthesis route and a kinetic control with surface capping. It is found that the as-prepared Pt–Ni alloy nanostructures exhibit an enhanced catalytic activity toward oxygen reduction reaction (ORR) and methanol oxidation reaction (MOR) in comparison with commercial Pt/C catalysts. The excellent electrooxidation property is attributed to the synergistic effect between Pt and Ni atoms, as well as high specific surface area of dumbbell-like nanostructures with multiple nanosheets. The present work provides new opportunities for the rational design of bimetallic nanomaterials with enhanced catalytic performance. © 2019 Elsevier B.V.
URI
http://hdl.handle.net/11615/72596
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