The investment costs for polymer electrolyte membrane (PEM) water electrolysis can be reduced if systems are operated at elevated current densities. However, it remains unknown how this affects long-term stability. In this study, we elucidate the durability and degradation phenomena that occur in our test cells at high (2 A cm−2) and elevated (up to 3 A cm−2) current densities during constant and intermittent operation. Up to 2 A cm−2, stable cell performance was achieved under both regime. At elevated current densities, two primary factors caused performance degradation, namely the increase in ohmic cell resistance and the appearance of mass-transport resistance, both of which contribute to the voltage increase in equal measures. By varyin...
Water electrolysis and fuel cell systems are storage technologies with great potential capacities bu...
The cost of polymer electrolyte water electrolysis (PEWE) is dominated by the price of electricity u...
Hydrogen is expected to play an important role as a crosslinking technology between power generation...
The durability of a polymer electrolyte membrane (PEM) water electrolysis single cell, assembled wit...
Polymer electrolyte membrane (PEM) water electrolysis generates ‘green’ hydrogen when conducted with...
High efficiencies, wide operation range and rapid response time have motivated the recent interest ...
If polymer electrolyte water electrolysis (PEWE) is to penetrate the energy market in the context of...
Water management is critical for achieving optimal performance and endurance of polymer-electrolyte ...
Water management is critical for achieving optimal performance and endurance of polymer-electrolyte ...
The aim of this study is to provide a better understanding of performance degrading mechanisms occur...
A 9-cell proton exchange membrane (PEM) water electrolysis stack is developed and tested for 7800 h....
The cost of polymer electrolyte water electrolysis (PEWE) is dominated by the price of electricity u...
The degradation of proton exchange membrane water electrolysis cells is usually measured in a tempor...
Water electrolysis and fuel cell systems are storage technologies with great potential capacities bu...
A 9-cell proton exchange membrane (PEM) water electrolysis stack is developed and tested for 7800 h....
Water electrolysis and fuel cell systems are storage technologies with great potential capacities bu...
The cost of polymer electrolyte water electrolysis (PEWE) is dominated by the price of electricity u...
Hydrogen is expected to play an important role as a crosslinking technology between power generation...
The durability of a polymer electrolyte membrane (PEM) water electrolysis single cell, assembled wit...
Polymer electrolyte membrane (PEM) water electrolysis generates ‘green’ hydrogen when conducted with...
High efficiencies, wide operation range and rapid response time have motivated the recent interest ...
If polymer electrolyte water electrolysis (PEWE) is to penetrate the energy market in the context of...
Water management is critical for achieving optimal performance and endurance of polymer-electrolyte ...
Water management is critical for achieving optimal performance and endurance of polymer-electrolyte ...
The aim of this study is to provide a better understanding of performance degrading mechanisms occur...
A 9-cell proton exchange membrane (PEM) water electrolysis stack is developed and tested for 7800 h....
The cost of polymer electrolyte water electrolysis (PEWE) is dominated by the price of electricity u...
The degradation of proton exchange membrane water electrolysis cells is usually measured in a tempor...
Water electrolysis and fuel cell systems are storage technologies with great potential capacities bu...
A 9-cell proton exchange membrane (PEM) water electrolysis stack is developed and tested for 7800 h....
Water electrolysis and fuel cell systems are storage technologies with great potential capacities bu...
The cost of polymer electrolyte water electrolysis (PEWE) is dominated by the price of electricity u...
Hydrogen is expected to play an important role as a crosslinking technology between power generation...