Development of platinum group metal-free catalysts for polymer electrolyte membrane fuel cells is a critical target to obtain a high market share of fuel cell electric vehicles in the long term. Recent studies have proved the feasibility of new materials with high catalytic activity towards the oxygen reduction reaction, which are based on Earth-abundant and low-cost elements. The stability of these materials is now the major concern at the current state of the art: In the initial hundreds of hours of operation, in fact, a significant loss of catalyst activity is observed. In the present work, the analysis of performance and degradation of cathode catalyst layers based on metal-nitrogen-carbon materials is carried out for 150 hours. The eff...
AbstractThe effect of the ionomer to carbon (I/C) ratio on the performance of single cell polymer el...
A cathode catalyst layer containing optimally distributed ionomer is critical to reduce the platinum...
Polymer electrolyte membrane fuel cells are a promising alternative energy source, capable of being ...
Development of platinum group metal-free catalysts for polymer electrolyte membrane fuel cells is a ...
This study investigated the structural degradation of a polymer electrolyte membrane fuel cell (PEMF...
In low temperature fuel cells the oxygen reduction reaction (ORR) at the cathode is responsible for ...
The long-term durability of the catalyst layers of a low-working temperature fuel cell such as a pol...
Fuel cells allow an environmentally friendly and highly efficiently conversion of chemical energy to...
Replacement of noble metal catalysts used in oxygen reduction reaction (ORR) is a research goal in ...
Unrecoverable and recoverable performance degradation is a major issue hindering commercialization o...
Fuel cells allow an environmentally friendly and highly efficiently conversion of chemical energy to...
An increasing energy demand and the need to reduce greenhouse gas emissions promotes a need for sust...
Polymer electrolyte membrane fuel cells (PEMFCs) are promising power sources for transportation appl...
One of the biggest obstacles to commercializing polymer electrolyte membrane fuel cells is the use o...
This research was designed to meet Daimler systematic efforts to address future electromobility dema...
AbstractThe effect of the ionomer to carbon (I/C) ratio on the performance of single cell polymer el...
A cathode catalyst layer containing optimally distributed ionomer is critical to reduce the platinum...
Polymer electrolyte membrane fuel cells are a promising alternative energy source, capable of being ...
Development of platinum group metal-free catalysts for polymer electrolyte membrane fuel cells is a ...
This study investigated the structural degradation of a polymer electrolyte membrane fuel cell (PEMF...
In low temperature fuel cells the oxygen reduction reaction (ORR) at the cathode is responsible for ...
The long-term durability of the catalyst layers of a low-working temperature fuel cell such as a pol...
Fuel cells allow an environmentally friendly and highly efficiently conversion of chemical energy to...
Replacement of noble metal catalysts used in oxygen reduction reaction (ORR) is a research goal in ...
Unrecoverable and recoverable performance degradation is a major issue hindering commercialization o...
Fuel cells allow an environmentally friendly and highly efficiently conversion of chemical energy to...
An increasing energy demand and the need to reduce greenhouse gas emissions promotes a need for sust...
Polymer electrolyte membrane fuel cells (PEMFCs) are promising power sources for transportation appl...
One of the biggest obstacles to commercializing polymer electrolyte membrane fuel cells is the use o...
This research was designed to meet Daimler systematic efforts to address future electromobility dema...
AbstractThe effect of the ionomer to carbon (I/C) ratio on the performance of single cell polymer el...
A cathode catalyst layer containing optimally distributed ionomer is critical to reduce the platinum...
Polymer electrolyte membrane fuel cells are a promising alternative energy source, capable of being ...