Significant mass-transport resistances in polymer-electrolyte-fuel-cell catalyst layers (CLs) impose a lower limit on Pt-loading levels, hindering wide-spread fuel-cell commercialization. The origin of this resistance remains unclear. Minimization of CL mass-transport resistance is imperative to achieve better CL design and performance. In this paper, an operando method based on H2 limiting current is used to characterize and quantify CL resistance in traditional porous Pt/carbon-based electrodes. CL sub-resistances are isolated using continuum multiscale modeling and experiments, investigating the effects of reactant molecular weight, pressure, and ionomer to carbon weight ratio. The results expose CL resistance including both interfacial ...
Fuel cells offer the potential for high efficiency energy conversion with only water and heat as sig...
Exploring the origins of local transport resistance and characterizing the oxygen transport resistan...
Exploring the origins of local transport resistance and characterizing the oxygen transport resistan...
Significant mass-transport resistances in polymer-electrolyte-fuel-cell catalyst layers (CLs) impose...
Significant mass-transport resistances in polymer-electrolyte-fuel-cell catalyst layers (CLs) impose...
Catalyst layers (CLs) in polymer-electrolyte fuel cells have garnered the attention of researchers d...
Mass-transport resistances observed with low platinum (Pt) loadings in polymer-electrolyte fuel-cell...
Catalyst layers (CLs) in polymer-electrolyte fuel cells have garnered the attention of researchers d...
Understanding transport resistances in a polymer-electrolyte fuel cell (PEFC) catalyst layer (CL) is...
Reducing the loading of expensive Pt-based catalysts in polymer-electrolyte fuel-cell (PEFC) catalys...
Reducing the loading of expensive Pt-based catalysts in polymer-electrolyte fuel-cell (PEFC) catalys...
In a polymer electrolyte fuel cell a catalyst layer is built typically of platinum nano-particles su...
Understanding the interaction between catalyst layer (CL) design parameters is a prerequisite for de...
Understanding the interaction between catalyst layer (CL) design parameters is a prerequisite for de...
Reducing mass-transport losses in polymer-electrolyte fuel cells (PEFCs) is essential to increase th...
Fuel cells offer the potential for high efficiency energy conversion with only water and heat as sig...
Exploring the origins of local transport resistance and characterizing the oxygen transport resistan...
Exploring the origins of local transport resistance and characterizing the oxygen transport resistan...
Significant mass-transport resistances in polymer-electrolyte-fuel-cell catalyst layers (CLs) impose...
Significant mass-transport resistances in polymer-electrolyte-fuel-cell catalyst layers (CLs) impose...
Catalyst layers (CLs) in polymer-electrolyte fuel cells have garnered the attention of researchers d...
Mass-transport resistances observed with low platinum (Pt) loadings in polymer-electrolyte fuel-cell...
Catalyst layers (CLs) in polymer-electrolyte fuel cells have garnered the attention of researchers d...
Understanding transport resistances in a polymer-electrolyte fuel cell (PEFC) catalyst layer (CL) is...
Reducing the loading of expensive Pt-based catalysts in polymer-electrolyte fuel-cell (PEFC) catalys...
Reducing the loading of expensive Pt-based catalysts in polymer-electrolyte fuel-cell (PEFC) catalys...
In a polymer electrolyte fuel cell a catalyst layer is built typically of platinum nano-particles su...
Understanding the interaction between catalyst layer (CL) design parameters is a prerequisite for de...
Understanding the interaction between catalyst layer (CL) design parameters is a prerequisite for de...
Reducing mass-transport losses in polymer-electrolyte fuel cells (PEFCs) is essential to increase th...
Fuel cells offer the potential for high efficiency energy conversion with only water and heat as sig...
Exploring the origins of local transport resistance and characterizing the oxygen transport resistan...
Exploring the origins of local transport resistance and characterizing the oxygen transport resistan...