Manufacturing new electrolytes with high ionic conductivity has been a crucial challenge in the development and large-scale distribution of fuel cell devices. In this work, we present two Nafion composite membranes containing a non-stoichiometric calcium titanate perovskite (CaTiO3−δ ) as a filler. These membranes are proposed as a proton exchange electrolyte for Polymer Electrolyte Membrane (PEM) fuel cell devices. More precisely, two different perovskite concentrations of 5 wt% and 10 wt%, with respect to Nafion, are considered. The structural, morphological, and chemical properties of the composite membranes are studied, revealing an inhomogeneous distribution of the filler within the polymer matrix. Direct methanol fuel cell (DMFC) test...
Polymer electrolyte fuel cells (PEFCs) employ membrane electrolytes for proton transport during the ...
Nafion composite membranes, containing different amounts of mesoporous sulfated titanium oxide (TiO2...
The electrospinning approach is an easy and useful method to fabricate porous supports with tailored...
A composite membrane based on a Nafion polymer matrix incorporating a non-stoichiometric calcium tit...
Nafion membranes are still the dominating material used in the polymer electrolyte membrane (PEM) te...
For sustainable economic growth and environment protection, energies generated from renewable source...
In this paper, we report a novel composite electrolyte membrane consisting of a polyethylene substra...
The design of higher temperature composite proton-exchange membranes (PEMs) with adequate performanc...
Combination of inorganic fillers into organic polymer membranes (organic–inorganic hybrid membranes)...
Although zeolites are introduced to decrease methanol crossover of Nafion membranes for direct meth...
A series of cation exchange membranes was produced by impregnating and coating both sides of a quart...
Direct methanol fuel cells (DMFCs) using a proton exchange membrane as electrolyte is an attractive ...
In this communication we present a detailed study of Nafion™ composite membranes containing differen...
Fuel cell technology is one of the emerging energy technologies, both for stationary applications (b...
International audienceNafion®-sepiolite composite membranes were prepared, characterized and integra...
Polymer electrolyte fuel cells (PEFCs) employ membrane electrolytes for proton transport during the ...
Nafion composite membranes, containing different amounts of mesoporous sulfated titanium oxide (TiO2...
The electrospinning approach is an easy and useful method to fabricate porous supports with tailored...
A composite membrane based on a Nafion polymer matrix incorporating a non-stoichiometric calcium tit...
Nafion membranes are still the dominating material used in the polymer electrolyte membrane (PEM) te...
For sustainable economic growth and environment protection, energies generated from renewable source...
In this paper, we report a novel composite electrolyte membrane consisting of a polyethylene substra...
The design of higher temperature composite proton-exchange membranes (PEMs) with adequate performanc...
Combination of inorganic fillers into organic polymer membranes (organic–inorganic hybrid membranes)...
Although zeolites are introduced to decrease methanol crossover of Nafion membranes for direct meth...
A series of cation exchange membranes was produced by impregnating and coating both sides of a quart...
Direct methanol fuel cells (DMFCs) using a proton exchange membrane as electrolyte is an attractive ...
In this communication we present a detailed study of Nafion™ composite membranes containing differen...
Fuel cell technology is one of the emerging energy technologies, both for stationary applications (b...
International audienceNafion®-sepiolite composite membranes were prepared, characterized and integra...
Polymer electrolyte fuel cells (PEFCs) employ membrane electrolytes for proton transport during the ...
Nafion composite membranes, containing different amounts of mesoporous sulfated titanium oxide (TiO2...
The electrospinning approach is an easy and useful method to fabricate porous supports with tailored...