Durability is a key issue of polymer electrolyte membrane fuel cells (PEMFC) with low Platinum loading, mainly because of the instability of Platinum catalyst nanoparticles in the cathode catalyst layer (CL). Degradation of catalyst is critical in consequence of several mechanisms, among which Platinum dissolution. As proposed in the literature, a possible strategy to mitigate Platinum dissolution consists in the development of CLs with gradient properties. In the present work, a theoretical analysis of Platinum dissolution is applied to the interpretation of degradation data recorded under accelerated stress tests (AST) on catalyst-coated membranes (CCMs) with 25 cm2 active area and low Pt loading. A transient model referenced t...
An increasing energy demand and the need to reduce greenhouse gas emissions promotes a need for sust...
Nano-sized Pt particles in the cathode catalyst layer of a polymer electrolyte fuel cell afford a hi...
The major source of membrane chemical degradation during proton exchange membrane fuel cell operatio...
Durability is a key issue of polymer electrolyte membrane fuel cells (PEMFC) with low Platinum load...
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...
Improving the durability of polymer electrolyte membrane fuel cells with low platinum loading is a c...
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...
Platinum stability in the catalyst layer is vital to the lifetime of polymer electrolyte fuel cells....
An increasing energy demand and the need to reduce greenhouse gas emissions promotes a need for sust...
Nano-sized Pt particles in the cathode catalyst layer of a polymer electrolyte fuel cell afford a hi...
The major source of membrane chemical degradation during proton exchange membrane fuel cell operatio...
Durability is a key issue of polymer electrolyte membrane fuel cells (PEMFC) with low Platinum load...
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...
Improving the durability of polymer electrolyte membrane fuel cells with low platinum loading is a c...
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...
Platinum stability in the catalyst layer is vital to the lifetime of polymer electrolyte fuel cells....
An increasing energy demand and the need to reduce greenhouse gas emissions promotes a need for sust...
Nano-sized Pt particles in the cathode catalyst layer of a polymer electrolyte fuel cell afford a hi...
The major source of membrane chemical degradation during proton exchange membrane fuel cell operatio...