Oxygen Evolution during Water Electrolysis from Thin Films Using Bimetallic Oxides of Ir-Pt and Ir-Ru
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- Type
- article
- Published
- 2013-01-01
- Cited by
- 37
- References
- 85
- Access
- Open access
- OpenAlex
- https://openalex.org/W2073884552
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:97949559
Keywords
Oxygen, Electrolysis of water, Stoichiometry, Oxygen evolution, Analytical Chemistry (journal)
References
- Flame synthesis of nanopowders via combustion chemical vapor deposition
- PEM fuel cell electrocatalysts and catalyst layers : fundamentals and applications
- Polymer electrolyte fuel cell durability
- Rare earth elements: critical resources for high technology
- Pure hydrogen production by PEM electrolysis for hydrogen energy
- Electrolyte Materials for Intermediate Temperature Fuel Cells Produced via Combustion Chemical Vapor Condensation
- Particle synthesis in flames
- The renaissance of unsupported nanostructured catalysts for low-temperature fuel cells: from the size to the shape of metal nanostructures
- Electrocatalysis: understanding the success of DSA®
- Electrochemical activity of ruthenium and iridium based catalysts for oxygen evolution reaction
- Sustainable Hydrogen Production
- Preparation and characterization of IrxPt1−xO2 anode electrocatalysts for the oxygen evolution reaction
- Formation, structure and electrochemical properties of IrO2-RuO2 oxide electrodes
- Electrolysis of water on oxide surfaces
- A voltammetric investigation of the charge storage reactions of hydrous iridium oxide layers
- Gas-phase combustion synthesis of particles
- Aerosol flame reactors for manufacture of nanoparticles
- Oxygen evolution on an electrodeposited ruthenium electrode in acid solution —the effect of thermal treatment
- Electrochemical studies of Pt/Ir–IrO2 electrocatalyst as a bifunctional oxygen electrode
- Pt/porous-IrO2 nanocomposite as promising electrocatalyst for unitized regenerative fuel cell
Cited by
- Flame Synthesis of Nanomaterials for Alternative Energy Applications
- Application of a Coated Film Catalyst Layer Model to a High Temperature Polymer Electrolyte Membrane Fuel Cell with Low Catalyst Loading Produced by Reactive Spray Deposition Technology
- Self-terminated electrodeposition of iridium electrocatalysts
- Flame-based processing as a practical approach for manufacturing hydrogen evolution electrodes
- Influence of the ionomer/carbon ratio for low-Pt loading catalyst layer prepared by reactive spray deposition technology
- Flame-Based Synthesis of Core-Shell Structures Using Pd-Ru and Pd Cores
- Catalyst nanoscale assembly from the vapor phase on corrosion resistant supports
- Titania Nanotubes by Electrochemical Anodization for Solar Energy Conversion
- One-Step Deposition of Catalyst Layers for High Temperature Proton Exchange Membrane Fuel Cells (PEMFC)
- Pathways to ultra-low platinum group metal catalyst loading in proton exchange membrane electrolyzers
- A Study on Reactive Spray Deposition Technology Processing Parameters in the Context of Pt Nanoparticle Formation
- Iridium As Catalyst and Cocatalyst for Oxygen Evolution/Reduction in Acidic Polymer Electrolyte Membrane Electrolyzers and Fuel Cells
- Ultra-low NO2 detection by gamma WO3 synthesized by Reactive Spray Deposition Technology
- On the Origin of the Improved Ruthenium Stability in RuO2–IrO2 Mixed Oxides
- Oxygen Evolution at IrO2 Shell-Ir-Ni Core Electrodes Prepared by Galvanic Replacement
- A study on the effect of selected process parameters in a jet diffusion flame for Pt nanoparticle formation
- Strategies to mitigate Pt dissolution in low Pt loading proton exchange membrane fuel cell: I. A gradient Pt particle size design
- Analysis of H2/Air Polarization Curves: The Influence of Low Pt Loading and Fabrication Process
- Nano-size IrOx catalyst of high activity and stability in PEM water electrolyzer with ultra-low iridium loading
- Iridium-Based Catalysts for Solid Polymer Electrolyte Electrocatalytic Water Splitting.
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