We present a model for oxygen reduction in water-filled, cylindrical nanopores with platinum walls. At one end, the pores are in contact with a polymer electrolyte membrane. The electrostatic interaction of the protons with the charged pore walls drives proton migration into the ionomer-free channels. We employ the Stern model to relate the surface charge density at the pore walls to the electrode potential. Proton and potential distributions within the pores are governed by the Poisson-Nernst-Planck theory and the oxygen distribution by Ficks law. Assuming a small local current density from oxygen reduction, we found an approximate analytical solution to the transport equations. The metal surface charge density and the corresponding proton...
Polymer electrolyte membrane fuel cells (PEMFCs) fueled by hydrogen are considered to be most suitab...
Because electron, proton, and oxygen are necessary for the cathode reaction in polymer electrolyte m...
Polymer electrolyte fuel cells (PEFC) convert chemicalenergy into electrical energy with higher effi...
In polymer electrolyte fuel cells, a foremost goal is to design catalyst layers with high performanc...
Ultrathin catalyst layers (UTCLs) are emerging as a promising alternative to conventional catalyst l...
We present an impedance model of oxygen reduction in water-flooded pores of ionomer-free, ultrathin ...
The foremost practical objective in research on polymer electrolyte fuel cells is to design catalyst...
The drastic loading reduction or complete elimination of Pt-group metals from PEM-based fuel cellsan...
Abstract: We study a pore scale model for the catalyst layer on the cath-ode side of a fuel cell, wh...
Widespread application of polymer electrolyte membrane fuel cells (PEMFC) and water electrolyzers (P...
Understanding the interaction between catalyst layer (CL) design parameters is a prerequisite for de...
Ionomer-free ultrathin catalyst layers have shown promise to enhance the performance and reduce the ...
Proton-exchange-membrane fuel cells (PEMFC) are a clean energy conversion alternative to traditional...
Proton exchange membrane (PEM) fuel cells have the potential to provide a clean and convenient sourc...
A high advancement has been achieved in the design of proton exchange membrane fuel cells (PEMFCs) s...
Polymer electrolyte membrane fuel cells (PEMFCs) fueled by hydrogen are considered to be most suitab...
Because electron, proton, and oxygen are necessary for the cathode reaction in polymer electrolyte m...
Polymer electrolyte fuel cells (PEFC) convert chemicalenergy into electrical energy with higher effi...
In polymer electrolyte fuel cells, a foremost goal is to design catalyst layers with high performanc...
Ultrathin catalyst layers (UTCLs) are emerging as a promising alternative to conventional catalyst l...
We present an impedance model of oxygen reduction in water-flooded pores of ionomer-free, ultrathin ...
The foremost practical objective in research on polymer electrolyte fuel cells is to design catalyst...
The drastic loading reduction or complete elimination of Pt-group metals from PEM-based fuel cellsan...
Abstract: We study a pore scale model for the catalyst layer on the cath-ode side of a fuel cell, wh...
Widespread application of polymer electrolyte membrane fuel cells (PEMFC) and water electrolyzers (P...
Understanding the interaction between catalyst layer (CL) design parameters is a prerequisite for de...
Ionomer-free ultrathin catalyst layers have shown promise to enhance the performance and reduce the ...
Proton-exchange-membrane fuel cells (PEMFC) are a clean energy conversion alternative to traditional...
Proton exchange membrane (PEM) fuel cells have the potential to provide a clean and convenient sourc...
A high advancement has been achieved in the design of proton exchange membrane fuel cells (PEMFCs) s...
Polymer electrolyte membrane fuel cells (PEMFCs) fueled by hydrogen are considered to be most suitab...
Because electron, proton, and oxygen are necessary for the cathode reaction in polymer electrolyte m...
Polymer electrolyte fuel cells (PEFC) convert chemicalenergy into electrical energy with higher effi...