International audienceA nanocomposite material consisting of platinum nanoparticles surrounded by an ionic conducting polymer dispersed on carbon Vulcan XC72 was synthesized. The aim of this nanocomposite material is to translate the triple-phase boundary to a molecular level in electrochemical systems involving a polymer electrolyte. The ionic conducting polymer is a poly(styrenesulfonic acid) (PSSA, or PSSNa in its sodium form) synthesized by atom-transfer radical polymerization. The polymer has a terminal thiol group to ensure bonding with platinum nanoparticles. The nanocomposite material (Pt-PSSA/C) exhibited thermal stability up to 160 degrees C and electrochemical stability up to 1 V versus RI-LE. Compared to a Pt/C catalyst, the nan...
Catalytic materials have attracted continuous attention due to their promising applications in a var...
The potential of graphite nanofiber (GNF)–Poly(3,4-ethylenedioxythiophene) (PEDOT) composite isexplo...
The efficiency of polymer electrolyte membrane fuel cells is strongly depending on the electrocataly...
International audienceA nanocomposite material consisting of platinum nanoparticles surrounded by an...
A carbon-supported Pt-RuS2 nanocomposite (Pt-RuS2/C) that contained extremely small amount of Pt com...
International audiencePlatinum nanoparticles supported on a carbon support (Pt-NPs/C) were synthesiz...
For polymer Nafion films production containing Pt nanocomposites it was used the influence of gamma ...
Mixing of a Pt-sputtered protic ionic liquid (PIL) containing 3,4-ethylenedioxythiophene and a carbo...
International audiencefavor Platinum nanoparticles (Pt-NPs) supported on carbon powder are prepared ...
The first generation of proton exchange membrane fuel cells uses costly and unsafe perfluorinated su...
Conductive polymers have been increasingly used as fuel cell catalyst support due to their electrica...
The complex interface between polymer electrolytes and nanostructured electrodes is key for the oper...
The polymer stabilized Pt nanoparticles were synthesized via alcohol reduction in the presence of po...
The efficiency of polymer electrolyte membrane fuel cells is strongly depending on the electrocataly...
Catalytic materials have attracted continuous attention due to their promising applications in a var...
The potential of graphite nanofiber (GNF)–Poly(3,4-ethylenedioxythiophene) (PEDOT) composite isexplo...
The efficiency of polymer electrolyte membrane fuel cells is strongly depending on the electrocataly...
International audienceA nanocomposite material consisting of platinum nanoparticles surrounded by an...
A carbon-supported Pt-RuS2 nanocomposite (Pt-RuS2/C) that contained extremely small amount of Pt com...
International audiencePlatinum nanoparticles supported on a carbon support (Pt-NPs/C) were synthesiz...
For polymer Nafion films production containing Pt nanocomposites it was used the influence of gamma ...
Mixing of a Pt-sputtered protic ionic liquid (PIL) containing 3,4-ethylenedioxythiophene and a carbo...
International audiencefavor Platinum nanoparticles (Pt-NPs) supported on carbon powder are prepared ...
The first generation of proton exchange membrane fuel cells uses costly and unsafe perfluorinated su...
Conductive polymers have been increasingly used as fuel cell catalyst support due to their electrica...
The complex interface between polymer electrolytes and nanostructured electrodes is key for the oper...
The polymer stabilized Pt nanoparticles were synthesized via alcohol reduction in the presence of po...
The efficiency of polymer electrolyte membrane fuel cells is strongly depending on the electrocataly...
Catalytic materials have attracted continuous attention due to their promising applications in a var...
The potential of graphite nanofiber (GNF)–Poly(3,4-ethylenedioxythiophene) (PEDOT) composite isexplo...
The efficiency of polymer electrolyte membrane fuel cells is strongly depending on the electrocataly...