Polymer electrolyte fuel cells (PEFCs) employ membrane electrolytes for proton transport during the cell reaction. The membrane forms a key component of the PEFC and its performance is controlled by several physical parameters, viz. water up-take, ion-exchange capacity, proton conductivity and humidity. The article presents an overview on Nafion membranes highlighting their merits and demerits with efforts on modified-Nafion membranes
ABSTRACT: In this work, new doped Nafion membranes with enhanced proton conductivity were prepared t...
In this paper, we report a novel composite electrolyte membrane consisting of a polyethylene substra...
The fuel cell is a renewable technology which utilizes the hydrogen fuel via oxidation to generate e...
Polymer electrolyte fuel cells (PEFCs) employ membrane electrolytes for proton transport during the ...
Polymer electrolyte fuel cells (PEFCs) employ membrane electrolytes for proton transport during the...
Nafion membranes are still the dominating material used in the polymer electrolyte membrane (PEM) te...
Fuel cell technology is one of the emerging energy technologies, both for stationary applications (b...
Under the growing pressure to veer from fossil fuel use to more environmentally conscious energy opt...
ABSTRACT: Fuel cells are among the cleaner alternatives of sustainable energy technologies, where th...
ABSTRACT: Energy systems with cleaner and sustainable sources are crucial challenges of the 21st cen...
Fuel cells are a developing technology within the energy sector that offer both efficiency and envir...
The large-scale development of polymer electrolyte membrane fuel cells (PMFCs) is partly set back b...
Presented on February 4, 2009, from 4-5 pm in room G011 of the Molecular Science and Engineering Bu...
Fuel cells, using hydrogen as energy carrier, allow chemically‑stored energy to be utilized for many...
A new hybrid proton exchange membrane (PEM) has been prepared from hydroxyl functionalized imidazoli...
ABSTRACT: In this work, new doped Nafion membranes with enhanced proton conductivity were prepared t...
In this paper, we report a novel composite electrolyte membrane consisting of a polyethylene substra...
The fuel cell is a renewable technology which utilizes the hydrogen fuel via oxidation to generate e...
Polymer electrolyte fuel cells (PEFCs) employ membrane electrolytes for proton transport during the ...
Polymer electrolyte fuel cells (PEFCs) employ membrane electrolytes for proton transport during the...
Nafion membranes are still the dominating material used in the polymer electrolyte membrane (PEM) te...
Fuel cell technology is one of the emerging energy technologies, both for stationary applications (b...
Under the growing pressure to veer from fossil fuel use to more environmentally conscious energy opt...
ABSTRACT: Fuel cells are among the cleaner alternatives of sustainable energy technologies, where th...
ABSTRACT: Energy systems with cleaner and sustainable sources are crucial challenges of the 21st cen...
Fuel cells are a developing technology within the energy sector that offer both efficiency and envir...
The large-scale development of polymer electrolyte membrane fuel cells (PMFCs) is partly set back b...
Presented on February 4, 2009, from 4-5 pm in room G011 of the Molecular Science and Engineering Bu...
Fuel cells, using hydrogen as energy carrier, allow chemically‑stored energy to be utilized for many...
A new hybrid proton exchange membrane (PEM) has been prepared from hydroxyl functionalized imidazoli...
ABSTRACT: In this work, new doped Nafion membranes with enhanced proton conductivity were prepared t...
In this paper, we report a novel composite electrolyte membrane consisting of a polyethylene substra...
The fuel cell is a renewable technology which utilizes the hydrogen fuel via oxidation to generate e...