In a membrane electrode assembly (MEA) of polymer electrolyte membrane fuel cells, the structure and morphology of catalyst layers are important to reduce electrochemical resistance and thus obtain high single cell performance. In this study, the catalyst layers fabricated by two catalyst coating methods, spraying method and screen printing method, were characterized by the microscopic images of catalyst layer surface, pore distributions, and electrochemical performances to study the effective MEA fabrication process. For this purpose, a micro-porous layer (MPL) was applied to two different coating methods intending to increase single cell performances by enhancing mass transport. Here, the morphology and structure of catalyst layers were c...
The production of components in polymer electrolyte membrane fuel cells is a widely researched topic...
With the surge of interest in the electrification of transportation driven by global climate change,...
A novel method based on pulse current electrodeposition (PCE) employing four different waveforms was...
In a membrane electrode assembly (MEA) of polymer electrolyte membrane fuel cells, the structure and...
Proton exchange membrane fuel cells (PEMFCs) are an important low-emission energy generation system ...
Microstructure and electrochemical properties of the cathode catalyst layers (CCL) of a polymer elec...
Fuel cell is a system that converts chemical energy to electrical energy from an oxidation-reduction...
AbstractA cost effective production of the membrane electrode assemblies (MEA) is a crucial issue fo...
Featuring low operational temperature and high-power density, polymer electrolyte membrane fuel cell...
Rational design of catalyst layers in a membrane electrode assembly (MEA) is crucial for achieving h...
One of the biggest obstacles to commercializing polymer electrolyte membrane fuel cells is the use o...
The heart of the Polymer electrolyte membrane fuel cell (PEMFC) is the membrane electrode assembly (...
The cathode in a polymer electrolyte fuel cell (PEFC) contributes the largest energy loss due to the...
Fuel cell technology continues to advance and offers to be a potentially promising solution to many ...
With the surge of interest in the electrification of transportation driven by global climate change,...
The production of components in polymer electrolyte membrane fuel cells is a widely researched topic...
With the surge of interest in the electrification of transportation driven by global climate change,...
A novel method based on pulse current electrodeposition (PCE) employing four different waveforms was...
In a membrane electrode assembly (MEA) of polymer electrolyte membrane fuel cells, the structure and...
Proton exchange membrane fuel cells (PEMFCs) are an important low-emission energy generation system ...
Microstructure and electrochemical properties of the cathode catalyst layers (CCL) of a polymer elec...
Fuel cell is a system that converts chemical energy to electrical energy from an oxidation-reduction...
AbstractA cost effective production of the membrane electrode assemblies (MEA) is a crucial issue fo...
Featuring low operational temperature and high-power density, polymer electrolyte membrane fuel cell...
Rational design of catalyst layers in a membrane electrode assembly (MEA) is crucial for achieving h...
One of the biggest obstacles to commercializing polymer electrolyte membrane fuel cells is the use o...
The heart of the Polymer electrolyte membrane fuel cell (PEMFC) is the membrane electrode assembly (...
The cathode in a polymer electrolyte fuel cell (PEFC) contributes the largest energy loss due to the...
Fuel cell technology continues to advance and offers to be a potentially promising solution to many ...
With the surge of interest in the electrification of transportation driven by global climate change,...
The production of components in polymer electrolyte membrane fuel cells is a widely researched topic...
With the surge of interest in the electrification of transportation driven by global climate change,...
A novel method based on pulse current electrodeposition (PCE) employing four different waveforms was...