Truncated octahedral Pt(3)Ni oxygen reduction reaction electrocatalysts.
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Summary
The results show that the mass activities of these carbon-supported truncated-octahedral Pt(3)Ni nanoparticle catalysts strongly depend on the (111) surface fraction, which validates the results of studies based on Pt( 3)Ni extended-single-crystal surfaces, suggesting that further development of catalysts with still higher mass activities is highly plausible.
- Type
- article
- Published
- 2010-03-24
- Cited by
- 479
- References
- 26
- OpenAlex
- https://openalex.org/W2000428049
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:19533882
Keywords
Chemistry, Catalysis, Octahedron, Carbon fibers, Nanoparticle
References
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Cited by
- Hierarchical Pd-Sn Alloy Nanosheet Dendrites: An Economical and Highly Active Catalyst for Ethanol Electrooxidation
- Platinum-based oxygen reduction electrocatalysts.
- Synthesis of Pt-Ni/graphene via in situ reduction and its enhanced catalyst activity for methanol oxidation.
- Bimetallic core-based cuboctahedral core-shell nanoclusters for the formation of hydrogen peroxide (2e- reduction) over water (4e- reduction): role of core metals.
- Computational studies of mono- and bimetallic nanoclusters for potential polymer electrolyte fuel cell applications
- Truncated octahedral platinum-nickel-iridium ternary electro-catalyst for oxygen reduction reaction
- PtxCuy nanocrystals with hexa-pod morphology and their electrocatalytic performances towards oxygen reduction reaction
- A review of the application and performance of carbon nanotubes in fuel cells
- Catalysts by Platonic design
- Recent advances in surface and interface engineering for electrocatalysis
- Advances in nanoscale alloys and intermetallics: low temperature solution chemistry synthesis and application in catalysis.
- Recent Advances in the Synthesis and Electrocatalytic Applications of Platinum‐Based Bimetallic Alloy Nanostructures
- Carbon nanotube/S–N–C nanohybrids as high performance bifunctional electrocatalysts for both oxygen reduction and evolution reactions
- Highly open rhombic dodecahedral PtCu nanoframes.
- Molten salt medium synthesis of wormlike platinum silver nanotubes without any organic surfactant or solvent for methanol and formic acid oxidation.
- Hierarchically structured catalyst layer for the oxygen reduction reaction fabricated by electrodeposition of platinum on carbon nanotube coated carbon fiber
- Pt–Co secondary solid solution nanocrystals supported on carbon as next-generation catalysts for the oxygen reduction reaction
- Multifunctional graphene‐based nanostructures for efficient electrocatalytic reduction of oxygen
- Formation of a Cu@RhRu core-shell concave nanooctahedron via Ru-assisted extraction of Rh from the Cu matrix and its excellent electrocatalytic activity toward the oxygen evolution reaction.
- A simple synthesis of urchin-like Pt-Ni bimetallic nanostructures as enhanced electrocatalysts for the oxygen reduction reaction.
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