Limiting current density of oxygen reduction reaction in polymer electrolyte fuel cells is determined by several mass transport resistances that lower the concentration of oxygen on the catalyst active site. Among them, diffusion across porous media plays a significant role. Despite the extensive experimental activity documented in PEMFC literature, only few efforts have been dedicated to the measurement of the effective transport properties in porous layers. In the present work, a methodology for ex situ measurement of the effective diffusion coefficient and Knudsen radius of porous layers for polymer electrolyte fuel cells (gas diffusion layer, micro porous layer and catalyst layer) is described and applied to high temperature polymer fue...
textOxygen gain is the difference in fuel cell performance operating on oxygen-depleted and oxygen-r...
Fuel cells convert chemical energy in electrical energy and heat by consuming typically hydrogen and...
textOxygen gain is the difference in fuel cell performance operating on oxygen-depleted and oxygen-r...
Limiting current density of oxygen reduction reaction in polymer electrolyte fuel cells is determine...
Limiting current density of oxygen reduction reaction in polymer electrolyte fuel cells is determine...
Limiting current density of oxygen reduction reaction in polymer electrolyte fuel cells is determine...
Limiting current density of oxygen reduction reaction in polymer electrolyte fuel cells is determine...
A novel method for measuring effective diffusion coefficient of porous materials is developed. The o...
The gas diffusion layer (GDL) is one of the key components in a polymer electrolyte membrane (PEM) f...
<p>Polymer electrolyte fuel cells (PEFCs) are a promising technology for environmentally friendly au...
Polymer electrolyte fuel cells (PEFCs) are a promising technology for environmentally friendly autom...
In this study, a new electrochemical impedance model to predict oxygen diffusion resistance in the c...
Fuel cells convert chemical energy in electrical energy and heat by consuming typically hydrogen and...
In Polymer Electrolyte Fuel Cells (PEFCs) the reaction- and product-gases and liquids are transporte...
In a polymer electrolyte fuel cell a catalyst layer is built typically of platinum nano-particles su...
textOxygen gain is the difference in fuel cell performance operating on oxygen-depleted and oxygen-r...
Fuel cells convert chemical energy in electrical energy and heat by consuming typically hydrogen and...
textOxygen gain is the difference in fuel cell performance operating on oxygen-depleted and oxygen-r...
Limiting current density of oxygen reduction reaction in polymer electrolyte fuel cells is determine...
Limiting current density of oxygen reduction reaction in polymer electrolyte fuel cells is determine...
Limiting current density of oxygen reduction reaction in polymer electrolyte fuel cells is determine...
Limiting current density of oxygen reduction reaction in polymer electrolyte fuel cells is determine...
A novel method for measuring effective diffusion coefficient of porous materials is developed. The o...
The gas diffusion layer (GDL) is one of the key components in a polymer electrolyte membrane (PEM) f...
<p>Polymer electrolyte fuel cells (PEFCs) are a promising technology for environmentally friendly au...
Polymer electrolyte fuel cells (PEFCs) are a promising technology for environmentally friendly autom...
In this study, a new electrochemical impedance model to predict oxygen diffusion resistance in the c...
Fuel cells convert chemical energy in electrical energy and heat by consuming typically hydrogen and...
In Polymer Electrolyte Fuel Cells (PEFCs) the reaction- and product-gases and liquids are transporte...
In a polymer electrolyte fuel cell a catalyst layer is built typically of platinum nano-particles su...
textOxygen gain is the difference in fuel cell performance operating on oxygen-depleted and oxygen-r...
Fuel cells convert chemical energy in electrical energy and heat by consuming typically hydrogen and...
textOxygen gain is the difference in fuel cell performance operating on oxygen-depleted and oxygen-r...