AbstractWe review the literature on proton conductivity and water uptake of composite polymer electrolyte membranes comprising bicontinuous hydrophilic and hydrophobic domains with well-controlled geometries. Both quantities appear to be enhanced when the width of the hydrophilic channels is smaller than 6nm
The advances in proton exchange membranes (PEM)s is critical for improving the performance of fuel c...
Currently, Nafion – a proton exchange membrane based on polymer fluorosulfonic acid ionomer has beco...
Proton exchange membrane (PEM) fuel cells are an eco-friendly power source that has great potential ...
AbstractWe review the literature on proton conductivity and water uptake of composite polymer electr...
We demonstrate that the water uptake and conductivity of proton-conducting block copolymer electroly...
AbstractThis article reviews recent studies on proton exchange membrane (PEM) materials for polymer ...
We demonstrate that the water uptake and conductivity of proton-conducting block copolymer electroly...
The design of higher temperature composite proton-exchange membranes (PEMs) with adequate performanc...
Hydrated membranes with cocontinuous hydrophilic and hydrophobic phases are needed to transport prot...
International audienceChemistry and processing have to be judiciously combined to structure the memb...
Progress in the area of proton conducting polymer electrolyte membranes is intimately linked with th...
ABSTRACT: In this work, new doped Nafion membranes with enhanced proton conductivity were prepared t...
Water electrolysis is an effective, durable and emission free technique to convert electrical energy...
Electrophysical properties of polymer-electrolyte membranes (PEM), used as proton conductors and sep...
Free volume plays a key role on transport in proton exchange membranes (PEMs), including ionic cond...
The advances in proton exchange membranes (PEM)s is critical for improving the performance of fuel c...
Currently, Nafion – a proton exchange membrane based on polymer fluorosulfonic acid ionomer has beco...
Proton exchange membrane (PEM) fuel cells are an eco-friendly power source that has great potential ...
AbstractWe review the literature on proton conductivity and water uptake of composite polymer electr...
We demonstrate that the water uptake and conductivity of proton-conducting block copolymer electroly...
AbstractThis article reviews recent studies on proton exchange membrane (PEM) materials for polymer ...
We demonstrate that the water uptake and conductivity of proton-conducting block copolymer electroly...
The design of higher temperature composite proton-exchange membranes (PEMs) with adequate performanc...
Hydrated membranes with cocontinuous hydrophilic and hydrophobic phases are needed to transport prot...
International audienceChemistry and processing have to be judiciously combined to structure the memb...
Progress in the area of proton conducting polymer electrolyte membranes is intimately linked with th...
ABSTRACT: In this work, new doped Nafion membranes with enhanced proton conductivity were prepared t...
Water electrolysis is an effective, durable and emission free technique to convert electrical energy...
Electrophysical properties of polymer-electrolyte membranes (PEM), used as proton conductors and sep...
Free volume plays a key role on transport in proton exchange membranes (PEMs), including ionic cond...
The advances in proton exchange membranes (PEM)s is critical for improving the performance of fuel c...
Currently, Nafion – a proton exchange membrane based on polymer fluorosulfonic acid ionomer has beco...
Proton exchange membrane (PEM) fuel cells are an eco-friendly power source that has great potential ...