Composite proton-conducting membranes, based on polybenzimidazole (PBI) and imidazole-derivatized silica are presented. The addition of even small amounts (similar to 10 wt %) of filler causes an improvement in the permanent proton conductivity by < 10(3). The preparation of PBI composite membranes with basic functionalities is a promising way to make possible their use in PEMFCs operating around 120 degrees C, the temperature required for automotive applications
In this work we propose the use of the ionic liquid 1-H-3-methylimidazolium bis(trifluoromethanesulf...
Electrochemical devices for the conversion of chemical energy into electrical power, such as proton ...
Inorganic-organic composite membranes were prepared by using partly cesium-substituted silicotungsti...
A series of proton exchange membranes based on polybenzimidazole (PBI) were prepared using the low c...
The use of phosphoric acid doped polybenzimidazole (PBI) membranes for fuel cell applications has be...
The quest for sustainable and more efficient energy-converting devices has been the focus of researc...
© 2016 Hydrogen Energy Publications LLC.Phosphoric acid doped polybenzimidazoles are among the most ...
The current goal on PEMFCs research points towards the optimization of devices working at temperatur...
The preparation and characterization of composite polybenzimidazole (PBI) membranes containing zeoli...
In this study, phosphoric acid doped PBI nanocomposite membranes were prepared by dispersion of vari...
Novel polybenzimidazole-based materials were synthesized and analyzed for use in polymer electrolyte...
AbstractDiethlyamine bisulphate/sulphate, an ionic liquid, was synthesised and characterised for hig...
High-temperature polymer electrolyte membrane fuel cell as a sustainable green technology has been d...
Polymer electrolyte membrane fuel cells (PEMFCs) are one of the most promising clean technologies un...
o broaden the operating temperature range of phosphoric acid (PA) doped polybenzimidazole membrane-b...
In this work we propose the use of the ionic liquid 1-H-3-methylimidazolium bis(trifluoromethanesulf...
Electrochemical devices for the conversion of chemical energy into electrical power, such as proton ...
Inorganic-organic composite membranes were prepared by using partly cesium-substituted silicotungsti...
A series of proton exchange membranes based on polybenzimidazole (PBI) were prepared using the low c...
The use of phosphoric acid doped polybenzimidazole (PBI) membranes for fuel cell applications has be...
The quest for sustainable and more efficient energy-converting devices has been the focus of researc...
© 2016 Hydrogen Energy Publications LLC.Phosphoric acid doped polybenzimidazoles are among the most ...
The current goal on PEMFCs research points towards the optimization of devices working at temperatur...
The preparation and characterization of composite polybenzimidazole (PBI) membranes containing zeoli...
In this study, phosphoric acid doped PBI nanocomposite membranes were prepared by dispersion of vari...
Novel polybenzimidazole-based materials were synthesized and analyzed for use in polymer electrolyte...
AbstractDiethlyamine bisulphate/sulphate, an ionic liquid, was synthesised and characterised for hig...
High-temperature polymer electrolyte membrane fuel cell as a sustainable green technology has been d...
Polymer electrolyte membrane fuel cells (PEMFCs) are one of the most promising clean technologies un...
o broaden the operating temperature range of phosphoric acid (PA) doped polybenzimidazole membrane-b...
In this work we propose the use of the ionic liquid 1-H-3-methylimidazolium bis(trifluoromethanesulf...
Electrochemical devices for the conversion of chemical energy into electrical power, such as proton ...
Inorganic-organic composite membranes were prepared by using partly cesium-substituted silicotungsti...