International audience• Degradation due air/air operation due to startup and shutdown in fuel cell studied. • The effect of platinum loading, and carbon support material is studied. • A segmented cathode hardware is utilized to study the effect along the flow field. • In-situ and ex-situ characterization were correlated to elucidate the degradation. • Limiting the anode's ability to reduce oxygen to water is key to mitigating loss. A B S T R A C T Polymer electrolyte membrane fuel cells have durability limitations associated with the startup and shutdown of the fuel cell, which is critical for real-world vehicle commercialization. During startup or shutdown, there exists an active region (hydrogen/air) and a passive region (air/air) between...
A long-term dynamic load cycle is performed on state-of-the-art membrane electrode assemblies, aimin...
The performance degradation of membrane electrode assembly (MEA) components in proton exchange membr...
This study combines local electrochemical diagnostics with ex situ analysis to investigate degradati...
International audience• Degradation due air/air operation due to startup and shutdown in fuel cell s...
International audienceSeparate testing protocols for fuel cell startup (SU) and shutdown (SD) are de...
An increasing energy demand and the need to reduce greenhouse gas emissions promotes a need for sust...
International audienceThis paper investigates aging heterogeneities that set up during \PEMFC\ opera...
AbstractWe focus on Pt degradation occurring during fuel cell vehicle (FCV) combined drive cycles in...
International audienceProton Exchange Membrane Fuel Cell is a promising technology to power electric...
International audienceDefects known to shorten the lifetime of polymer electrolyte membrane fuel cel...
The long-term durability of the catalyst layers of a low-working temperature fuel cell such as a pol...
A long-term dynamic load cycle is performed on state-of-the-art membrane electrode assemblies, aimin...
The performance degradation of membrane electrode assembly (MEA) components in proton exchange membr...
This study combines local electrochemical diagnostics with ex situ analysis to investigate degradati...
International audience• Degradation due air/air operation due to startup and shutdown in fuel cell s...
International audienceSeparate testing protocols for fuel cell startup (SU) and shutdown (SD) are de...
An increasing energy demand and the need to reduce greenhouse gas emissions promotes a need for sust...
International audienceThis paper investigates aging heterogeneities that set up during \PEMFC\ opera...
AbstractWe focus on Pt degradation occurring during fuel cell vehicle (FCV) combined drive cycles in...
International audienceProton Exchange Membrane Fuel Cell is a promising technology to power electric...
International audienceDefects known to shorten the lifetime of polymer electrolyte membrane fuel cel...
The long-term durability of the catalyst layers of a low-working temperature fuel cell such as a pol...
A long-term dynamic load cycle is performed on state-of-the-art membrane electrode assemblies, aimin...
The performance degradation of membrane electrode assembly (MEA) components in proton exchange membr...
This study combines local electrochemical diagnostics with ex situ analysis to investigate degradati...