In this work, new insights into impacts of the polytetrafluoroethylene (PTFE) binder on high temperature polymer electrolyte fuel cells (HT-PEFCs) are provided by means of various characterizations and accelerated stress tests. Cathodes with PTFE contents from 0 wt% to 60 wt% were fabricated and compared using electrochemical measurements. The results indicate that the cell with 10 wt% PTFE in the cathode catalyst layer (CCL) shows the best performance due to having the lowest mass transport resistance and cathode protonic resistance. Moreover, cyclic voltammograms show that Pt (100) edge and corner sites are significantly covered by PTFE and phosphate anions when the PTFE content is higher than 25 wt%. Open-circuit and low load-cycling con...
In low temperature fuel cells gases and water must be transported into and out from the electrodes, ...
<p>The effects of electrode parameters on membrane<br>electrode assembly performance including Pt lo...
The performance of high-temperature polymer electrolyte fuel cells is influenced by the components i...
The polybenzimidazole-based high-temperature polymer electrolyte fuel (HT-PEFC) has become a major t...
The polybenzimidazole-based high-temperature polymer electrolyte fuel (HT-PEFC) has become a major t...
The polybenzimidazole-based high-temperature polymer electrolyte fuel (HT-PEFC) has become a major t...
The purpose of this study is to compare the degradation phenomena in high-temperature polymer electr...
In this study, Polytetrafluoroethylene (PTFE) was added to catalyst layer structure. This modificati...
Fuel cell technology has progressed significantly regarding performance and durability during the la...
The paper focuses on the investigation of durability and performance of a low temperature polymer el...
High temperature proton exchange membrane fuel cells (HT-PEMFCs) typically employ either acid-absorb...
The paper focuses on the investigation of durability and performance of a low temperature polymer el...
The life time of fuel cells is a critical topic for the commercialization of fuel cells. One of the ...
A particular challenge related to low temperature polymer electrolyte fuel cells (PEMFC) is to maint...
Fuel cell technology has progressed significantly regarding performance and durability during the la...
In low temperature fuel cells gases and water must be transported into and out from the electrodes, ...
<p>The effects of electrode parameters on membrane<br>electrode assembly performance including Pt lo...
The performance of high-temperature polymer electrolyte fuel cells is influenced by the components i...
The polybenzimidazole-based high-temperature polymer electrolyte fuel (HT-PEFC) has become a major t...
The polybenzimidazole-based high-temperature polymer electrolyte fuel (HT-PEFC) has become a major t...
The polybenzimidazole-based high-temperature polymer electrolyte fuel (HT-PEFC) has become a major t...
The purpose of this study is to compare the degradation phenomena in high-temperature polymer electr...
In this study, Polytetrafluoroethylene (PTFE) was added to catalyst layer structure. This modificati...
Fuel cell technology has progressed significantly regarding performance and durability during the la...
The paper focuses on the investigation of durability and performance of a low temperature polymer el...
High temperature proton exchange membrane fuel cells (HT-PEMFCs) typically employ either acid-absorb...
The paper focuses on the investigation of durability and performance of a low temperature polymer el...
The life time of fuel cells is a critical topic for the commercialization of fuel cells. One of the ...
A particular challenge related to low temperature polymer electrolyte fuel cells (PEMFC) is to maint...
Fuel cell technology has progressed significantly regarding performance and durability during the la...
In low temperature fuel cells gases and water must be transported into and out from the electrodes, ...
<p>The effects of electrode parameters on membrane<br>electrode assembly performance including Pt lo...
The performance of high-temperature polymer electrolyte fuel cells is influenced by the components i...