An identical-location transmission electron microscopy study on the degradation of Pt/C nanoparticles under oxidizing, reducing and neutral atmosphere
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- Type
- article
- Published
- 2013-11-01
- Cited by
- 98
- References
- 52
- OpenAlex
- https://openalex.org/W1974100659
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:93894100
Keywords
Oxidizing agent, Transmission electron microscopy, Atmosphere (unit), X-ray photoelectron spectroscopy, Chemistry
References
- RRDE study of oxygen reduction on Pt nanoparticles inside Nafion®: H2O2 production in PEMFC cathode conditions
- Handbook of fuel cells : fundamentals technology and applications
- Membrane and Active Layer Degradation Following PEMFC Steady-State Operation II. Influence of Pt z + on Membrane Properties
- Just a Dream—or Future Reality?
- Effects of operating potential and temperature on degradation of electrocatalyst layer for PEFCs
- Detection of Pt z + Ions and Pt Nanoparticles Inside the Membrane of a Used PEMFC
- Solubility of platinum in aqueous solutions at 25°C and pHs 4 to 10 under oxidizing conditions
- Three-dimensional tracking and visualization of hundreds of Pt-Co fuel cell nanocatalysts during electrochemical aging.
- Comparative IL-TEM Study Concerning the Degradation of Carbon Supported Pt-Based Electrocatalysts
- Durability of PEFCs at High Humidity Conditions
- Fuel cell catalyst degradation on the nanoscale
- Solubility of Platinum in Acidic Media (I)—in Sulfuric Acid
- An EC-FTIR study on the catalytic role of Pt in carbon corrosion
- Carbon support oxidation in PEM fuel cell cathodes
- Degradation Mechanisms of Pt/C Fuel Cell Catalysts under Simulated Start–Stop Conditions
- IL-TEM investigations on the degradation mechanism of Pt/C electrocatalysts with different carbon supports
- Oxygen electroreduction on carbon-supported platinum catalysts. Particle-size effect on the tolerance to methanol competition
- Non-destructive transmission electron microscopy study of catalyst degradation under electrochemical treatment
- Further insights into the durability of Pt3Co/C electrocatalysts: Formation of “hollow” Pt nanoparticles induced by the Kirkendall effect
- Durability of Pt3Co/C nanoparticles in a proton-exchange membrane fuel cell: Direct evidence of bulk Co segregation to the surface
Cited by
- Recovery mechanisms in proton exchange membrane fuel cells after accelerated stress tests
- Environmentally Friendly Carbon-Preserving Recovery of Noble Metals From Supported Fuel Cell Catalysts.
- Estudo do desempenho e estabilidade de catalisadores Pt-Y/C em cátodo de célula a combustível
- Atomic-scale restructuring of hollow PtNi/C electrocatalysts during accelerated stress tests
- Efficient amorphous platinum catalyst cluster growth on porous carbon: A combined Molecular Dynamics and experimental study
- Ultradisperse Pt nanoparticles anchored on defect sites in oxygen-free few-layer graphene and their catalytic properties in CO oxidation
- Atomic-scale structure and composition of Pt3Co/C nanocrystallites during real PEMFC operation: A STEM-EELS study
- Design criteria for stable Pt/C fuel cell catalysts
- A comparative study on gold and platinum dissolution in acidic and alkaline media
- The role of water in the degradation of Pt3Co/C nanoparticles: An Identical Location Transmission Electron Microscopy study in polymer electrolyte environment
- Accelerated degradation of Pt3Co/C and Pt/C electrocatalysts studied by identical-location transmission electron microscopy in polymer electrolyte environment
- The impact of dissolved reactive gases on platinum dissolution in acidic media
- Probing the structure, the composition and the ORR activity of Pt3Co/C nanocrystallites during a 3422 h PEMFC ageing test
- Influence of the reaction temperature on the oxygen reduction reaction on nitrogen-doped carbon nanotube catalysts
- Temperature-Dependent Dissolution of Polycrystalline Platinum in Sulfuric Acid Electrolyte
- Accelerated Stress Tests of Pt/HSAC Electrocatalysts: an Identical-Location Transmission Electron Microscopy Study on the Influence of Intermediate Characterizations
- Carbon Corrosion in Proton-Exchange Membrane Fuel Cells: Effect of the Carbon Structure, the Degradation Protocol, and the Gas Atmosphere
- Evaluation of the Corrosion Resistance of Carbons for Use as PEM Fuel Cell Cathode Supports
- Unveiling the crucial role of temperature on the stability of oxygen reduction reaction electrocatalysts
- Identical Location Transmission Electron Microscopy Imaging of Site-Selective Pt Nanocatalysts: Electrochemical Activation and Surface Disordering.
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