We report a model for performance of the cathode catalyst layer in PEM fuel cell; the model takes into account a finite rate of oxygen adsorption on Pt surface. An analytical polarization curve of the cathode catalyst layer is derived. The curve is fitted to recent experimental polarization curves; the equivalent current density of O2 adsorption on Pt surface is estimated to be 0.18 A View the MathML sourcecmPt−2. We show that decrease in the cell performance due to finite rate of O2 adsorption at a small catalyst loading can be mitigated by making a gradient electrode with the catalyst loading growing toward the membrane
The effects of platinum loadings and thickness of catalyst layer on the overall polarization of prot...
We derive analytical solution for the polarization curve of the cathode catalyst layer (CCL), taking...
A two-dimensional, multiphase, non-isothermal model is utilized for the design of cathode catalyst l...
Simple analytical expressions for the polarization voltage of the cathode side of a PEM fuel cell fo...
An analytical polarization curve of the cathode side of a PEM fuel cell is derived. The curve result...
We report an approximate analytical solution to the system of equations for the cathode catalyst lay...
A recent single–pore model for performance of cathode catalyst layer (CCL) in a low–Pt PEM fuel cell...
We report an exact solution to the system of equations for performance of the cathode catalyst layer...
Using the variational technique we show that in PEM fuel cells, an exponential shape of the local cu...
We develop a semi-analytical model for polarization curve of a polymer electrolyte membrane (PEM) fu...
In this work, we use the polarization curve of a polymer electrolyte membrane (PEM) fuel cell to inv...
We report the most general analytical solutions to a macrohomogeneous model for performance of the c...
In this study, a single polymer electrolyte membrane fuel cell (PEMFC) in H2/ /O2 form with an effec...
We report an exact solution to the system of equations for performance of the cathode catalyst layer...
Polymer electrolyte membrane (PEM) fuel cells are close to commercialization: recently, car industry...
The effects of platinum loadings and thickness of catalyst layer on the overall polarization of prot...
We derive analytical solution for the polarization curve of the cathode catalyst layer (CCL), taking...
A two-dimensional, multiphase, non-isothermal model is utilized for the design of cathode catalyst l...
Simple analytical expressions for the polarization voltage of the cathode side of a PEM fuel cell fo...
An analytical polarization curve of the cathode side of a PEM fuel cell is derived. The curve result...
We report an approximate analytical solution to the system of equations for the cathode catalyst lay...
A recent single–pore model for performance of cathode catalyst layer (CCL) in a low–Pt PEM fuel cell...
We report an exact solution to the system of equations for performance of the cathode catalyst layer...
Using the variational technique we show that in PEM fuel cells, an exponential shape of the local cu...
We develop a semi-analytical model for polarization curve of a polymer electrolyte membrane (PEM) fu...
In this work, we use the polarization curve of a polymer electrolyte membrane (PEM) fuel cell to inv...
We report the most general analytical solutions to a macrohomogeneous model for performance of the c...
In this study, a single polymer electrolyte membrane fuel cell (PEMFC) in H2/ /O2 form with an effec...
We report an exact solution to the system of equations for performance of the cathode catalyst layer...
Polymer electrolyte membrane (PEM) fuel cells are close to commercialization: recently, car industry...
The effects of platinum loadings and thickness of catalyst layer on the overall polarization of prot...
We derive analytical solution for the polarization curve of the cathode catalyst layer (CCL), taking...
A two-dimensional, multiphase, non-isothermal model is utilized for the design of cathode catalyst l...