Polysulfones functionalized with highly phosphonated poly(pentafluorostyrene) side chains of different length were synthesized applying controlled polymerization and modification methods. The graft copolymers' thermal properties were evaluated by differential scanning calorimetry and thermal gravimetrical analyses. The proton conductivity of membrane prepared from the graft copolymer with the shortest phosphonated side chains was 134 mS cm−1 at 100 °C under fully immersed conditions. The graft copolymer TEM image shows a nanophase separation of ion-rich segments within the polysulfone matrix. Increasing the ionic groups content in the graft copolymers led to extensive membrane swelling. To improve the dimensional stability the graft copolym...
International audienceDespite some serious drawbacks (high cost, conductivity losses at high tempera...
Proton-exchange membranes based on gamma-irradiated films of PVDF and radiation-grafted sulfonated p...
The development of new materials for use in fuel cells is of importance for the probable replacement...
A multi-step synthetic strategy to polysulfone (PSU) grafted with phosphonated poly(pentafluorostyre...
A series of amorphous graft copolymers of polysulfone-g-poly(styrenesulfonic acid) (PSF-g-PSSA) with...
The role of polymer nanostructure on morphology, crystallinity, water sorption and proton conductivi...
The proton exchange membrane fuel cell (PEMFC) is currently emerging as an efficient and environment...
A series of ionic ABA triblock copolymers having a central polysulfone (PSU) central block and poly(...
We report here submicron-structured proton conducting poly(vinylidene fluoride)-graft-poly(styrene s...
Polysulfones carrying benzoyl(difluoromethylenephosphonic acid) side chains were prepared and invest...
Proton exchange membranes (PEMs) are a key component in PEM fuel cells, serving as both a fuel separ...
In order to probe the effects of polymer microstructure on the properties of proton conducting polym...
Alternating aromatic multiblock copolymers have been structurally designed to enable selective lithi...
New PFA-g-polystyrene sulfonic acid membranes were prepared by radiation-induced graft copolymerizat...
Highly sulfonated poly(ether sulfone)s with densely populated flexible acid side chains were prepare...
International audienceDespite some serious drawbacks (high cost, conductivity losses at high tempera...
Proton-exchange membranes based on gamma-irradiated films of PVDF and radiation-grafted sulfonated p...
The development of new materials for use in fuel cells is of importance for the probable replacement...
A multi-step synthetic strategy to polysulfone (PSU) grafted with phosphonated poly(pentafluorostyre...
A series of amorphous graft copolymers of polysulfone-g-poly(styrenesulfonic acid) (PSF-g-PSSA) with...
The role of polymer nanostructure on morphology, crystallinity, water sorption and proton conductivi...
The proton exchange membrane fuel cell (PEMFC) is currently emerging as an efficient and environment...
A series of ionic ABA triblock copolymers having a central polysulfone (PSU) central block and poly(...
We report here submicron-structured proton conducting poly(vinylidene fluoride)-graft-poly(styrene s...
Polysulfones carrying benzoyl(difluoromethylenephosphonic acid) side chains were prepared and invest...
Proton exchange membranes (PEMs) are a key component in PEM fuel cells, serving as both a fuel separ...
In order to probe the effects of polymer microstructure on the properties of proton conducting polym...
Alternating aromatic multiblock copolymers have been structurally designed to enable selective lithi...
New PFA-g-polystyrene sulfonic acid membranes were prepared by radiation-induced graft copolymerizat...
Highly sulfonated poly(ether sulfone)s with densely populated flexible acid side chains were prepare...
International audienceDespite some serious drawbacks (high cost, conductivity losses at high tempera...
Proton-exchange membranes based on gamma-irradiated films of PVDF and radiation-grafted sulfonated p...
The development of new materials for use in fuel cells is of importance for the probable replacement...