Optimization of the structure of cathode catalyst layers (CCLs) for promoting the transfer of reactants and products in polymer electrolyte fuel cells (PEFCs) is important for improving the cell performance. In this study, using theoretical equations, we confirmed that the shortened proton conduction path in the ionomer layer (IL) with a 3D-patterned structure, compared to that in the IL with a flat-patterned structure, can improve the cell performance. We experimentally investigated the effect of the IL with a 3D-patterned structure included in the CCLs on the cell performance. Based on the combination of the flat- or 3D-pattern of the IL and the catalyst layer (CL), the samples were categorized as Str. 1 (3D-patterned CL without IL), Str....
The effect of Nafion loading on the electrode polarization characteristics of a proton exchange memb...
Microstructure and electrochemical properties of the cathode catalyst layers (CCL) of a polymer elec...
Fuel cell technologies can be considered as clean and reliable alternatives to fossil fuel, which ar...
The production of components in polymer electrolyte membrane fuel cells is a widely researched topic...
A structure-based performance model for Cathode Catalyst Layers (CCLs) of Polymer Electrolyte Membra...
Efforts in design and optimization of catalyst layers for polymer electrolyte fuel cells hinge on ma...
Proton exchange membrane fuel cell (PEMFC) is generally regarded as a promising energy conversion de...
Understanding the interaction between catalyst layer (CL) design parameters is a prerequisite for de...
Because electron, proton, and oxygen are necessary for the cathode reaction in polymer electrolyte m...
A cathode catalyst layer containing optimally distributed ionomer is critical to reduce the platinum...
Although micro-patterned membranes improve the performances of proton exchange membrane fuel cells, ...
Water management is vital for the successful development of PEM fuel cells. Water should be carefull...
Increasing the utilization of Pt and Pt alloy catalysts in polymer electrolyte fuel cell cathodes is...
Gas diffusion electrodes (GDEs) containing a graded distribution of Nafion were prepared and charact...
The foremost practical objective in research on polymer electrolyte fuel cells is to design catalyst...
The effect of Nafion loading on the electrode polarization characteristics of a proton exchange memb...
Microstructure and electrochemical properties of the cathode catalyst layers (CCL) of a polymer elec...
Fuel cell technologies can be considered as clean and reliable alternatives to fossil fuel, which ar...
The production of components in polymer electrolyte membrane fuel cells is a widely researched topic...
A structure-based performance model for Cathode Catalyst Layers (CCLs) of Polymer Electrolyte Membra...
Efforts in design and optimization of catalyst layers for polymer electrolyte fuel cells hinge on ma...
Proton exchange membrane fuel cell (PEMFC) is generally regarded as a promising energy conversion de...
Understanding the interaction between catalyst layer (CL) design parameters is a prerequisite for de...
Because electron, proton, and oxygen are necessary for the cathode reaction in polymer electrolyte m...
A cathode catalyst layer containing optimally distributed ionomer is critical to reduce the platinum...
Although micro-patterned membranes improve the performances of proton exchange membrane fuel cells, ...
Water management is vital for the successful development of PEM fuel cells. Water should be carefull...
Increasing the utilization of Pt and Pt alloy catalysts in polymer electrolyte fuel cell cathodes is...
Gas diffusion electrodes (GDEs) containing a graded distribution of Nafion were prepared and charact...
The foremost practical objective in research on polymer electrolyte fuel cells is to design catalyst...
The effect of Nafion loading on the electrode polarization characteristics of a proton exchange memb...
Microstructure and electrochemical properties of the cathode catalyst layers (CCL) of a polymer elec...
Fuel cell technologies can be considered as clean and reliable alternatives to fossil fuel, which ar...