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Journal of Power Sources, ISSN 0378-7753, 2009, Volume 188, Issue 2, pp. 347 - 352
Journal Article
ChemElectroChem, ISSN 2196-0216, 06/2018, Volume 5, Issue 11, pp. 1424 - 1434
Journal Article
Journal of Power Sources, ISSN 0378-7753, 2010, Volume 195, Issue 11, pp. 3394 - 3401
Journal Article
ChemCatChem, ISSN 1867-3880, 03/2018, Volume 10, Issue 5, pp. 931 - 935
Three‐dimensional (3 D) nanoframes (NFs) with interconnected edges and large surface areas represent a new class of nanostructures with advanced catalytic... 
copper | platinum | tunable channels | reduction | nanostructures | OXIDATION | PT-BASED CATALYSTS | BIMETALLIC NANOCRYSTALS | PERFORMANCE | CHEMISTRY, PHYSICAL | OXYGEN REDUCTION REACTION | NANOPARTICLES | DURABILITY | METAL | FACETS | Fuel cells
Journal Article
ACS Catalysis, ISSN 2155-5435, 04/2015, Volume 5, Issue 4, pp. 2209 - 2212
A novel nanoparticle-stacking thin film (NPSTF) of Pt–Ni alloy for highly active oxygen reduction reaction (ORR) electrocatalyst was synthesized. The Pt mass... 
Pt-based alloys | arc plasma deposition | proton exchange membrane fuel cell | thin film catalysts | oxygen reduction reaction | STABILITY | PLATINUM | CHEMISTRY, PHYSICAL | ALLOY NANOPARTICLES | FUEL-CELLS | SEGREGATION | CATALYSTS | SURFACES
Journal Article
Electrochimica Acta, ISSN 0013-4686, 09/2013, Volume 107, pp. 509 - 517
•TiO2 functionalized graphene nanosheets were used as a support for Pt nanoparticles.•Pt nanoparticles anchored onto TiO2/graphene were employed as catalysts... 
Pt nanoparticles | Oxygen reduction | Pt-based catalysts | Graphene | Titanium dioxide | ELECTROCHEMISTRY | PLATINUM DISSOLUTION | MEMBRANE | ELECTROCHEMICAL REDUCTION | ELECTROLYTE FUEL-CELLS | DURABILITY | CARBON CORROSION | DEGRADATION | ALKALINE-SOLUTION | CATALYST SUPPORT | THIN-FILM | Electrodes | Reduction | Catalysts | Platinum | Particulate composites | Nanostructure
Journal Article
Catalysis Today, ISSN 0920-5861, 07/2019, Volume 332, pp. 101 - 108
[Display omitted] •Pt/MnOx and Pt/MnO electrocatalysts were prepared for the oxygen reduction reaction.•Pt-based electrocatalysts showed high utilization... 
Manganese oxides | Oxygen reduction reaction | Utilization efficiency | Pt-based electrocatalysts | OXIDATION | MNO2 | MECHANISM | PLATINUM | CHEMISTRY, PHYSICAL | CATALYST | MANGANESE OXIDE | ENGINEERING, CHEMICAL | NANOPARTICLES | PHASE | EVOLUTION | XPS | CHEMISTRY, APPLIED
Journal Article