Conduction properties of the polymer gel electrolytes of lithium were investigated based on the electrical conductivity and diffusion coefficient using the pulsed gradient spin echo NMR technique. The gel electrolytes prepared by the phase inversion method showed characteristic features in diffusive behavior depending on the kind of immiscible solvent used during the preparation process of the porous polymer membranes. The diffusion coefficients of several kinds of gel were composed of two components that were attributed to the different phases, the trapped solution in the cavities in the membrane and the swollen polymer chains due to the immersed solution. The swollen polymer dominates the high conductivity of this type of gel electr...
International audienceABSTRACT Solid electrolyte materials have the potential to improve performance...
International audienceABSTRACT Solid electrolyte materials have the potential to improve performance...
The transport of lithium ions in cation-exchange membranes based on sulfonated copolyimide membranes...
The conductive and diffusional behavior of electrolytes in media with different dielectric and visco...
The transport dynamics in gel electrolytes based on amphiphilic polymers was found to be faster than...
The conductive and diffusional behavior of electrolytes in media with different dielectric and visco...
We have prepared polymer gel electrolytes with alkali metal ionic liquids (AMILs) that inherently co...
The influence of the structure of cationic poly(ionic liquid)s (PIL) on the physical properties of...
Since PMMA-based gel polymer electrolytes could substitute PVDF-HFP based gels currently used in Li-...
Since PMMA-based gel polymer electrolytes could substitute PVDF-HFP based gels currently used in Li-...
Since PMMA-based gel polymer electrolytes could substitute PVDF-HFP based gels currently used in Li-...
The pulsed-field gradient nuclear magnetic resonance (PFG-NMR) method of measuring self diffusion ha...
Polymethylmethacrylate (PMMA)-based gel polymer electrolytes comprising ethylene carbonate-propylene...
AbstractPolymethylmethacrylate (PMMA)-based gel polymer electrolytes comprising ethylene carbonate–p...
The polymerization of lithium 2-acrylamido-2-methyl-1-propane sulphonic acid with N,N′-dimethy...
International audienceABSTRACT Solid electrolyte materials have the potential to improve performance...
International audienceABSTRACT Solid electrolyte materials have the potential to improve performance...
The transport of lithium ions in cation-exchange membranes based on sulfonated copolyimide membranes...
The conductive and diffusional behavior of electrolytes in media with different dielectric and visco...
The transport dynamics in gel electrolytes based on amphiphilic polymers was found to be faster than...
The conductive and diffusional behavior of electrolytes in media with different dielectric and visco...
We have prepared polymer gel electrolytes with alkali metal ionic liquids (AMILs) that inherently co...
The influence of the structure of cationic poly(ionic liquid)s (PIL) on the physical properties of...
Since PMMA-based gel polymer electrolytes could substitute PVDF-HFP based gels currently used in Li-...
Since PMMA-based gel polymer electrolytes could substitute PVDF-HFP based gels currently used in Li-...
Since PMMA-based gel polymer electrolytes could substitute PVDF-HFP based gels currently used in Li-...
The pulsed-field gradient nuclear magnetic resonance (PFG-NMR) method of measuring self diffusion ha...
Polymethylmethacrylate (PMMA)-based gel polymer electrolytes comprising ethylene carbonate-propylene...
AbstractPolymethylmethacrylate (PMMA)-based gel polymer electrolytes comprising ethylene carbonate–p...
The polymerization of lithium 2-acrylamido-2-methyl-1-propane sulphonic acid with N,N′-dimethy...
International audienceABSTRACT Solid electrolyte materials have the potential to improve performance...
International audienceABSTRACT Solid electrolyte materials have the potential to improve performance...
The transport of lithium ions in cation-exchange membranes based on sulfonated copolyimide membranes...