The influence of the membrane thickness on the performance and durability of 25 cm2 membrane electrode assembly (MEA) toward dynamic aging test was investigated. The tested MEAs consist of chemically stabilized membranes (AQUIVION™) with thicknesses of 30 and 50 µm, electrocatalyst – 46 %Pt/C (Tanaka) with Pt loadings of 0.25 (anode), 0.45 mg.cm-2 (cathode) and gas diffusion layers 25 BC (SGL Group). The applied dynamic aging procedure is repetitive current cycling between 0.12 A.cm-2 for 40 s and 0.6 A.cm-2 for 20 s. The testing conditions were 80o C, fully saturated hydrogen and air, total pressure of 2.5 atm. abs. The aging procedure was regularly interrupted for evaluating the MEAs’ “health” via electrochemical methods and mass spectrom...
The mechanisms of fuel cell degradation are not well understood. Even though the numbers of installe...
Polymer electrolyte fuel cell (PEMFC) is promising source of clean power in many applications rangin...
In: Proceedings HYPOTHESIS VIII- Hydrogen Systems and Materials for Sustainability, HYP_45, Lisbon, ...
As fuel cell technology matures and time scale to commercialization decreases, the need for a more c...
Polymer exchange membrane (PEM) fuel cells are considered promising power sources, with a vast appli...
International audienceThrough a tight collaboration between chemical engineers, polymer scientists, ...
International audienceMEAs with various cathode Pt loadings were elaborated and aged using a multipl...
As fuel cell technology matures and time scale to commercialization decreases, the need for a more c...
Cette thèse a permis de mettre en évidence les mécanismes de vieillissement de la pile à combustible...
A long-term dynamic load cycle is performed on state-of-the-art membrane electrode assemblies, aimin...
To meet the requirements of membrane electrode assemblies (MEAs) for polymer electrolyte fuel cells ...
The durability of polymer exchange membrane (PEM) fuel cells, under a wide range of operational cond...
As fuel cell technology matures and time scale to commercialization decreases, the need for a more c...
The membrane electrode assembly (MEA) durability test protocols proposed by FCCJ, USFCC and DOE were...
In this paper, 550 h (500 h continuous and 50 h intermittent) high-temperature proton exchange membr...
The mechanisms of fuel cell degradation are not well understood. Even though the numbers of installe...
Polymer electrolyte fuel cell (PEMFC) is promising source of clean power in many applications rangin...
In: Proceedings HYPOTHESIS VIII- Hydrogen Systems and Materials for Sustainability, HYP_45, Lisbon, ...
As fuel cell technology matures and time scale to commercialization decreases, the need for a more c...
Polymer exchange membrane (PEM) fuel cells are considered promising power sources, with a vast appli...
International audienceThrough a tight collaboration between chemical engineers, polymer scientists, ...
International audienceMEAs with various cathode Pt loadings were elaborated and aged using a multipl...
As fuel cell technology matures and time scale to commercialization decreases, the need for a more c...
Cette thèse a permis de mettre en évidence les mécanismes de vieillissement de la pile à combustible...
A long-term dynamic load cycle is performed on state-of-the-art membrane electrode assemblies, aimin...
To meet the requirements of membrane electrode assemblies (MEAs) for polymer electrolyte fuel cells ...
The durability of polymer exchange membrane (PEM) fuel cells, under a wide range of operational cond...
As fuel cell technology matures and time scale to commercialization decreases, the need for a more c...
The membrane electrode assembly (MEA) durability test protocols proposed by FCCJ, USFCC and DOE were...
In this paper, 550 h (500 h continuous and 50 h intermittent) high-temperature proton exchange membr...
The mechanisms of fuel cell degradation are not well understood. Even though the numbers of installe...
Polymer electrolyte fuel cell (PEMFC) is promising source of clean power in many applications rangin...
In: Proceedings HYPOTHESIS VIII- Hydrogen Systems and Materials for Sustainability, HYP_45, Lisbon, ...