The production of components in polymer electrolyte membrane fuel cells is a widely researched topic and still has a lot of potential for optimization. Especially the reduction of used materials like ionomer and platinum in fuel cell electrodes and the improvement of their performance are highly desired. In this study we discuss the potential of structured cathode catalyst layers by introducing a through plane ionomer gradient. For this purpose different catalyst layers with a platinum loading of 0.25 mg/cm2 have been produced by screen printing, followed by extensive In-Situ characterization in a fuel cell test bench. The results show that combining high amounts of ionomer at the membrane/electrode interface, and decreasing amounts towards...
Proton exchange membrane fuel cell (PEMFC) catalyst layers (CLs) were fabricated by direct depositio...
Gas diffusion electrodes (GDEs) containing a graded distribution of Nafion were prepared and charact...
Featuring low operational temperature and high-power density, polymer electrolyte membrane fuel cell...
The production of components in polymer electrolyte membrane fuel cells is a widely researched topic...
Optimization of the structure of cathode catalyst layers (CCLs) for promoting the transfer of reacta...
Efforts in design and optimization of catalyst layers for polymer electrolyte fuel cells hinge on ma...
Large-scale applications of polymer electrolyte membrane fuel cells (PEMFCs) are throttled primarily...
Polymer electrolyte fuel cells (PEFCs) provide a promising way to mitigate global warming since thes...
One of the biggest obstacles to commercializing polymer electrolyte membrane fuel cells is the use o...
The structure and morphology of fuel cell catalyst layers and concomitant system properties, particu...
Microstructure and electrochemical properties of the cathode catalyst layers (CCL) of a polymer elec...
In a membrane electrode assembly (MEA) of polymer electrolyte membrane fuel cells, the structure and...
Polymer-electrolyte membrane (PEM) fuel-cells are one of the most promising energy conversion techno...
Because electron, proton, and oxygen are necessary for the cathode reaction in polymer electrolyte m...
Reducing Pt in proton exchange membrane fuel cells is the subject of intense research and developmen...
Proton exchange membrane fuel cell (PEMFC) catalyst layers (CLs) were fabricated by direct depositio...
Gas diffusion electrodes (GDEs) containing a graded distribution of Nafion were prepared and charact...
Featuring low operational temperature and high-power density, polymer electrolyte membrane fuel cell...
The production of components in polymer electrolyte membrane fuel cells is a widely researched topic...
Optimization of the structure of cathode catalyst layers (CCLs) for promoting the transfer of reacta...
Efforts in design and optimization of catalyst layers for polymer electrolyte fuel cells hinge on ma...
Large-scale applications of polymer electrolyte membrane fuel cells (PEMFCs) are throttled primarily...
Polymer electrolyte fuel cells (PEFCs) provide a promising way to mitigate global warming since thes...
One of the biggest obstacles to commercializing polymer electrolyte membrane fuel cells is the use o...
The structure and morphology of fuel cell catalyst layers and concomitant system properties, particu...
Microstructure and electrochemical properties of the cathode catalyst layers (CCL) of a polymer elec...
In a membrane electrode assembly (MEA) of polymer electrolyte membrane fuel cells, the structure and...
Polymer-electrolyte membrane (PEM) fuel-cells are one of the most promising energy conversion techno...
Because electron, proton, and oxygen are necessary for the cathode reaction in polymer electrolyte m...
Reducing Pt in proton exchange membrane fuel cells is the subject of intense research and developmen...
Proton exchange membrane fuel cell (PEMFC) catalyst layers (CLs) were fabricated by direct depositio...
Gas diffusion electrodes (GDEs) containing a graded distribution of Nafion were prepared and charact...
Featuring low operational temperature and high-power density, polymer electrolyte membrane fuel cell...