Improving the durability of polymer electrolyte membrane fuel cells with low platinum loading is a crucial step in the development of next generation electric vehicles. In this work a simplified model of nanoparticle growth is spatially solved across the catalyst layer and combined with a PEMFC model to analyze the heterogeneity of degradation that is induced by accelerated stress test for electrocatalyst durability, which mimics the degradation due to load cycling. The model is calibrated and later validated by analyzing experimental data collected on cathode catalyst layers with 0.1 mg cm(-2) platinum loading and average particle size ranging from 2 nm to 5 nm. Non-uniform degradation is observed in the catalyst layer consequently to the ...
The catalyst durability at low Pt loading remains a barrier for industrial commercialization of the ...
Nano-sized Pt particles in the cathode catalyst layer of a polymer electrolyte fuel cell afford a hi...
One of the bottlenecks hindering the usage of polymer electrolyte membrane fuel cell technology in a...
Improving the durability of polymer electrolyte membrane fuel cells with low platinum loading is a c...
Improving the durability of polymer electrolyte membrane fuel cells with low platinum loading is a c...
Improving the durability of polymer electrolyte membrane fuel cells with low platinum loading is a c...
Durability is a key issue of polymer electrolyte membrane fuel cells (PEMFC) with low Platinum load...
Durability is a key issue of polymer electrolyte membrane fuel cells (PEMFC) with low Platinum load...
The loss of electrochemical active surface area (ECSA) at the cathode is one of the main causes of p...
The loss of electrochemical active surface area (ECSA) at the cathode is one of the main causes of p...
The loss of electrochemical active surface area (ECSA) at the cathode is one of the main causes of p...
The loss of electrochemical active surface area (ECSA) at the cathode is one of the main causes of p...
The loss of electrochemical active surface area (ECSA) at the cathode is one of the main causes of p...
The long-term durability of the catalyst layers of a low-working temperature fuel cell such as a pol...
The catalyst durability at low Pt loading remains a barrier for industrial commercialization of the ...
The catalyst durability at low Pt loading remains a barrier for industrial commercialization of the ...
Nano-sized Pt particles in the cathode catalyst layer of a polymer electrolyte fuel cell afford a hi...
One of the bottlenecks hindering the usage of polymer electrolyte membrane fuel cell technology in a...
Improving the durability of polymer electrolyte membrane fuel cells with low platinum loading is a c...
Improving the durability of polymer electrolyte membrane fuel cells with low platinum loading is a c...
Improving the durability of polymer electrolyte membrane fuel cells with low platinum loading is a c...
Durability is a key issue of polymer electrolyte membrane fuel cells (PEMFC) with low Platinum load...
Durability is a key issue of polymer electrolyte membrane fuel cells (PEMFC) with low Platinum load...
The loss of electrochemical active surface area (ECSA) at the cathode is one of the main causes of p...
The loss of electrochemical active surface area (ECSA) at the cathode is one of the main causes of p...
The loss of electrochemical active surface area (ECSA) at the cathode is one of the main causes of p...
The loss of electrochemical active surface area (ECSA) at the cathode is one of the main causes of p...
The loss of electrochemical active surface area (ECSA) at the cathode is one of the main causes of p...
The long-term durability of the catalyst layers of a low-working temperature fuel cell such as a pol...
The catalyst durability at low Pt loading remains a barrier for industrial commercialization of the ...
The catalyst durability at low Pt loading remains a barrier for industrial commercialization of the ...
Nano-sized Pt particles in the cathode catalyst layer of a polymer electrolyte fuel cell afford a hi...
One of the bottlenecks hindering the usage of polymer electrolyte membrane fuel cell technology in a...