The physicochemical properties of a range of NaNTf2 (or NaTFSI) salt concentrations in N-propyl-N-methylpyrrolidinium bis(fluorosulfonyl)imide (or C3mpyrFSI) ionic liquid were investigated by DSC, conductivity, cyclic voltammetry and diffusivity studies. Cyclic voltammetry indicated a stable sodium plating behavior with a current of 5 mA cm(-2) at 25 °C to 20 mA cm(-2) at 100 °C, along with high reversibility identifying this electrolyte as a possible candidate for sodium-ion or sodium metal battery applications. (23)Na NMR chemical shifts and spectral linewidths (FWHM) indicate a complex coordination of the Na(+) ion which is dependent on both temperature and salt concentration with an apparently stronger coordination to the NTf2 a...
The development of nonflammable, chemically and thermally stable electrolytes that can replace curre...
Understanding ion transport in electrolytes is crucial for fabricating high-performance batteries. A...
International audienceThe development of nonflammable, chemically and thermally stable electrolytes ...
We study the liquid mixture of sodium bis(trifluoromethanesulfonyl)imide in N-butyl-N-methylpyrrolid...
Safer electrolytes for ambient temperature sodium batteries were prepared by blending the N-butyl-N-...
Safer electrolytes for ambient temperature sodium batteries were prepared by blending the N-butyl-N-...
Electrolytes consisting of sodium bis(fluorosulfonyl)imide (NaFSI) dissolved in glymes (monoglyme, d...
The electrochemical performance of ionic liquid electrolytes containing different sodium salts disso...
The ion dynamics in a novel sodium-containing room-temperature ionic liquid (IL) consisting of an et...
International audienceThe development of nonflammable, chemically and thermally stable electrolytes ...
International audienceThe development of nonflammable, chemically and thermally stable electrolytes ...
International audienceThe development of nonflammable, chemically and thermally stable electrolytes ...
The development of nonflammable, chemically and thermally stable electrolytes that can replace curre...
International audienceThe development of nonflammable, chemically and thermally stable electrolytes ...
International audienceThe development of nonflammable, chemically and thermally stable electrolytes ...
The development of nonflammable, chemically and thermally stable electrolytes that can replace curre...
Understanding ion transport in electrolytes is crucial for fabricating high-performance batteries. A...
International audienceThe development of nonflammable, chemically and thermally stable electrolytes ...
We study the liquid mixture of sodium bis(trifluoromethanesulfonyl)imide in N-butyl-N-methylpyrrolid...
Safer electrolytes for ambient temperature sodium batteries were prepared by blending the N-butyl-N-...
Safer electrolytes for ambient temperature sodium batteries were prepared by blending the N-butyl-N-...
Electrolytes consisting of sodium bis(fluorosulfonyl)imide (NaFSI) dissolved in glymes (monoglyme, d...
The electrochemical performance of ionic liquid electrolytes containing different sodium salts disso...
The ion dynamics in a novel sodium-containing room-temperature ionic liquid (IL) consisting of an et...
International audienceThe development of nonflammable, chemically and thermally stable electrolytes ...
International audienceThe development of nonflammable, chemically and thermally stable electrolytes ...
International audienceThe development of nonflammable, chemically and thermally stable electrolytes ...
The development of nonflammable, chemically and thermally stable electrolytes that can replace curre...
International audienceThe development of nonflammable, chemically and thermally stable electrolytes ...
International audienceThe development of nonflammable, chemically and thermally stable electrolytes ...
The development of nonflammable, chemically and thermally stable electrolytes that can replace curre...
Understanding ion transport in electrolytes is crucial for fabricating high-performance batteries. A...
International audienceThe development of nonflammable, chemically and thermally stable electrolytes ...