We demonstrate the unprecedented proton exchange membrane fuel cell (PEMFC) performance durability of a family of dealloyed Pt–Ni nanoparticle catalysts for the oxygen reduction reaction (ORR), exceeding scientific and technological state-of-art activity and stability targets. We provide atomic-scale insight into key factors controlling the stability of the cathode catalyst by studying the influence of particle size, the dealloying protocol and post-acid-treatment annealing on nanoporosity and passivation of the alloy nanoparticles. Scanning transmission electron microscopy coupled to energy dispersive spectroscopy data revealed the compositional variations of Ni in the particle surface and core, which were combined with an analysis of the ...
Size-selected 9 nm PtxY nanoparticles have recently shown an outstanding catalytic activity for the ...
Pt-based alloys have shown great promise as cathodic catalysts for cost-effective proton-exchange me...
Yan, YushanPolymer electrolyte membrane fuel cells include proton exchange membrane fuel cells (PEMF...
We provide a comprehensive durability assessment dedicated to a promising class of electrocatalysts ...
Fuel cells are devices that can efficiently convert fuels into electricity without the limitation of...
International audienceFuel cell catalysts preliminary testing in model laboratory environment is an ...
textProton exchange membrane fuel cells (PEMFC) are attractive power sources as they offer high conv...
International audienceThe ever-growing energy demand worldwide and the announced end of the so-calle...
Preliminary testing of fuel cell catalysts in a model laboratory environment is an essential step in...
textThis thesis discusses the effect of initial particle size and alloying of Pt nanocatalysts on th...
A Ni-rich Pt-Ni alloy was synthesized via a solvothermal method and transformed into platinum-nickel...
Polymer electrolyte membrane fuel cell (PEMFC), is considered a promising candidate for the next gen...
Advances in fuel cell technology depend strongly on the development of affordable, active, and stabl...
Proton exchange membrane fuel cells (PEMFCs) offer an attractive zero-emission power generation tech...
Size-selected 9 nm PtxY nanoparticles have recently shown an outstanding catalytic activity for the ...
Pt-based alloys have shown great promise as cathodic catalysts for cost-effective proton-exchange me...
Yan, YushanPolymer electrolyte membrane fuel cells include proton exchange membrane fuel cells (PEMF...
We provide a comprehensive durability assessment dedicated to a promising class of electrocatalysts ...
Fuel cells are devices that can efficiently convert fuels into electricity without the limitation of...
International audienceFuel cell catalysts preliminary testing in model laboratory environment is an ...
textProton exchange membrane fuel cells (PEMFC) are attractive power sources as they offer high conv...
International audienceThe ever-growing energy demand worldwide and the announced end of the so-calle...
Preliminary testing of fuel cell catalysts in a model laboratory environment is an essential step in...
textThis thesis discusses the effect of initial particle size and alloying of Pt nanocatalysts on th...
A Ni-rich Pt-Ni alloy was synthesized via a solvothermal method and transformed into platinum-nickel...
Polymer electrolyte membrane fuel cell (PEMFC), is considered a promising candidate for the next gen...
Advances in fuel cell technology depend strongly on the development of affordable, active, and stabl...
Proton exchange membrane fuel cells (PEMFCs) offer an attractive zero-emission power generation tech...
Size-selected 9 nm PtxY nanoparticles have recently shown an outstanding catalytic activity for the ...
Pt-based alloys have shown great promise as cathodic catalysts for cost-effective proton-exchange me...
Yan, YushanPolymer electrolyte membrane fuel cells include proton exchange membrane fuel cells (PEMF...