RRDE study of oxygen reduction on Pt nanoparticles inside Nafion®: H2O2 production in PEMFC cathode conditions
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- Type
- article
- Published
- 2000-07-01
- Cited by
- 214
- References
- 22
- OpenAlex
- https://openalex.org/W402333284
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:92678636
Keywords
Platinum, Proton exchange membrane fuel cell, Electrochemistry, Nafion, Inorganic chemistry
References
- Electrochemical Oxygen Technology
- Electrode kinetics of oxygen reduction: A theoretical and experimental analysis of the rotating ring-disc electrode method
- Particle size effect for oxygen reduction and methanol oxidation on Pt/C inside a proton exchange membrane
- Electrochemical oxygen reduction at composite films of Nafion®, polyaniline and Pt
- Electroreduction of molecular oxygen on preferentially oriented platinum electrodes in acid solution
- Oxygen reduction on Pt and Cu surfaces modified by underpotential adsorbates
- Distinction between Intermediates Produced in Main and Side Electrodic Reactions
- Rotating disk electrode: A re-examination of some kinetic criteria with a special reference to oxygen reduction
- The reaction between H2 and O2 over supported platinum catalysts
- The morphological and surface properties and their relationship with oxygen reduction activity for platinum-iron electrocatalysts
- Different views regarding the kinetics and mechanisms of oxygen reduction at Pt and Pd electrodes
- Electrochemical reduction of oxygen on platinum nanoparticles in alkaline media
- Electrocatalysis, diffusion and ohmic drop in PEMFC: Particle size and spatial discrete distribution effects
- Rotating ring-disk electrode study on the cathodic oxygen reduction at Nafion®-coated gold electrodes
- Oxygen reduction on well-defined platinum nanoparticles inside recast ionomer
- Size effects of platinum particles on the electroreduction of oxygen
- Kinetics and mechanism of the electrochemical reduction of molecular oxygen on platinum in KOH: influence of preferred crystallographic orientation
- Particle size and structural effects in platinum electrocatalysis
- Particle Size Effects for Oxygen Reduction on Highly Dispersed Platinum in Acid Electrolytes
- Oxygen Reduction on Platinum in 85% Orthophosphoric Acid
Cited by
- Fuel Cells: State-of-the-Art and Major Scientific and Engineering Problems
- Flame Synthesis of Nanomaterials for Alternative Energy Applications
- Synthèse et étude de matériaux nanostructurés à base d'acétate de cellulose pour applications énergétiques
- Etude du vieillissement des assemblages membrane-électrodes pour piles à combustible basse température
- Mécanismes de dégradation des membranes polyaromatiques sulfonées en pile à combustible
- Modélisation de la dégradation chimique de membranes dans les piles à combustibles à membrane électrolyte polymère
- Synthesis, characterization, and design of precious metal electrocatalysts supported on transition metal carbides
- Structural parameters of supported fuel cell catalysts: The effect of particle size, inter-particle distance and metal loading on catalytic activity and fuel cell performance
- Eletrocatálise da reação de redução de oxigênio em meio ácido em ligas de platina dispersa em carbono
- Carbon Materials as Supports for Fuel Cell Electrocatalysts
- Synthesis, Characterization, and Electrochemical Evaluation of Novel, Highly Active Catalysts for the Oxygen Reduction Reaction in Alkaline Media
- Selenourea-assisted synthesis of selenium-modified iridium catalysts: evaluation of their activity toward reduction of oxygen
- Enhancement of 4-electron O2 reduction by a Cu(ii)-pyridylamine complex via protonation of a pendant pyridine in the second coordination sphere in water.
- Step-by-Step Synthesis of Non-Noble Metal Electrocatalysts for O2 Reduction under Proton Exchange Membrane Fuel Cell Conditions
- The effect of boron doping into Co-C-N and Fe-C-N electrocatalysts on the oxygen reduction reaction
- An identical-location transmission electron microscopy study on the degradation of Pt/C nanoparticles under oxidizing, reducing and neutral atmosphere
- Electroreduction of oxygen on Co-based catalysts: determination of the parameters affecting the two-electron transfer reaction in an acid medium
- Application of conventional activated carbon loaded with dispersed Pt to PEFC catalyst layer
- Perfluorinated ion-exchange membranes
- Preparation and cyclic voltammetric dissolution of core–shell–shell Ag–Pt–Ag nanocubes and their comparison in oxygen reduction reaction in alkaline media
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