Proton exchange membrane fuel cell (PEMFC) catalyst layers (CLs) were fabricated by direct deposition of the catalyst onto Nafion® membranes using reactive spray deposition technique (RSDT) to reduce platinum (Pt) loading and reduce the number of catalyst synthesis and processing steps. Nitrogen adsorption, mercury porosimetry, and scanning electron microscopy (SEM) were used to investigate the effects of ionomer/carbon ratio (I/C) on the surface area, pore structure and morphology of the CLs; cyclic voltammetry and polarization curves were used to determine the electrochemically active area (ECSA) and PEMFC performance. The BET surface area and pore volume of the CLs decreased continuously with increasing I/C ratio regardless of the cataly...
International audienceDespite significant decrease in past decades, the cost of Proton Exchange Memb...
Understanding the interaction between catalyst layer (CL) design parameters is a prerequisite for de...
Reactive Spray Deposition Technology (RSDT) is a fabrication process developed for the 1-step deposi...
Proton exchange membrane fuel cell (PEMFC) catalyst layers (CLs) were fabricated by direct depositio...
The optimization of low catalyst loading electrode fabricated with reactive spray deposition technol...
Reactive spray deposition technology (RSDT) is a cost-effective method for producing high performanc...
Reactive spray deposition technology (RSDT) is a method of depositing films or producing nanopowders...
Catalyst-coated membranes (CCMs) for use in high temperature proton exchange membrane fuel cells (PE...
The present study examines the physical and electrochemical properties of platinum particles generat...
The structure and morphology of fuel cell catalyst layers and concomitant system properties, particu...
One of the biggest obstacles to commercializing polymer electrolyte membrane fuel cells is the use o...
Cathode catalyst layer has an important role on water management across the membrane electrode assem...
The production of components in polymer electrolyte membrane fuel cells is a widely researched topic...
In this work, the microstructure of conventional catalyst layers of PEM fuel cells (PEMFCs) is inves...
As the platinum (Pt) loading in proton exchange membrane fuel cell cathodes is driven down to reduce...
International audienceDespite significant decrease in past decades, the cost of Proton Exchange Memb...
Understanding the interaction between catalyst layer (CL) design parameters is a prerequisite for de...
Reactive Spray Deposition Technology (RSDT) is a fabrication process developed for the 1-step deposi...
Proton exchange membrane fuel cell (PEMFC) catalyst layers (CLs) were fabricated by direct depositio...
The optimization of low catalyst loading electrode fabricated with reactive spray deposition technol...
Reactive spray deposition technology (RSDT) is a cost-effective method for producing high performanc...
Reactive spray deposition technology (RSDT) is a method of depositing films or producing nanopowders...
Catalyst-coated membranes (CCMs) for use in high temperature proton exchange membrane fuel cells (PE...
The present study examines the physical and electrochemical properties of platinum particles generat...
The structure and morphology of fuel cell catalyst layers and concomitant system properties, particu...
One of the biggest obstacles to commercializing polymer electrolyte membrane fuel cells is the use o...
Cathode catalyst layer has an important role on water management across the membrane electrode assem...
The production of components in polymer electrolyte membrane fuel cells is a widely researched topic...
In this work, the microstructure of conventional catalyst layers of PEM fuel cells (PEMFCs) is inves...
As the platinum (Pt) loading in proton exchange membrane fuel cell cathodes is driven down to reduce...
International audienceDespite significant decrease in past decades, the cost of Proton Exchange Memb...
Understanding the interaction between catalyst layer (CL) design parameters is a prerequisite for de...
Reactive Spray Deposition Technology (RSDT) is a fabrication process developed for the 1-step deposi...