Recently unveiled 'alkali metal fluorosulphate (AMSO 4F)' class of compounds offers promising electrochemical and transport properties. Registering conductivity value as high as 10 -7 S cm -1 in NaMSO 4F phases, we explored the fluorosulphate group to design novel compounds with high Li-ion conductivity suitable for solid electrolyte applications. In the process, we produced sillimanite-structured LiZnSO 4F by low temperature synthesis (T ≤ 300 °C). Examining this phase, we accidentally discovered the possibility of improving the ionic conductivity of poor conductors by forming a monolayer of ionic liquid at their particle surface. This phenomenon was studied by solid-state NMR, XPS and AC impedance spectroscopy techniques. Further, similar...
Searching for possible new cathode materials with the ability to outperform LiFePO 4, our group has ...
A novel solvating ionic liquid (SIL), N-methyl N-oligo(ethylene oxide)pyrrolidinium bis(fluorosulfon...
Novel ionic liquids (ILs), which were functionalized with ether oxygens to suppress crystallization ...
Wrapped in IL: Solid electrolytes are key for safer lithium batteries. The novel LiZnSO 4F fluorosul...
3d-metal fluorosulphates that have a tavorite-type structure (e.g., LiFeSO4F) were recently reported...
We have recently reported a promising 3.6 V metal fluorosulphate (LiFeSO4F) electrode, capable of hi...
The ionic liquid (IL) N-methyl-N-butylmorpholinium bis(fluorosulfonyl)imide (C4mmor FSI) is examined...
Ionothermal synthesis has recently been used to prepare a fluorosulfate (LiFeSO4 F) capable of rever...
The use of ionic liquids (ILs) as electrolytes for lithium metal secondary batteries was investigate...
The development of new materials for secondary batteries is nowadays one of the most active fields i...
In the quest for next-generation cathodes for Li-ion batteries, our group has come up with a novel m...
International audienceSearching for possible new cathode materials with the ability to outperform Li...
We demonstrate that Li+ hopping conduction, which cannot be explained by conventional models i.e., O...
FSI−-based ionic liquids (ILs) are promising electrolyte candidates for long-life and safe lithium m...
FSI−-based ionic liquids (ILs) are promising electrolyte candidates for long-life and safe lithium m...
Searching for possible new cathode materials with the ability to outperform LiFePO 4, our group has ...
A novel solvating ionic liquid (SIL), N-methyl N-oligo(ethylene oxide)pyrrolidinium bis(fluorosulfon...
Novel ionic liquids (ILs), which were functionalized with ether oxygens to suppress crystallization ...
Wrapped in IL: Solid electrolytes are key for safer lithium batteries. The novel LiZnSO 4F fluorosul...
3d-metal fluorosulphates that have a tavorite-type structure (e.g., LiFeSO4F) were recently reported...
We have recently reported a promising 3.6 V metal fluorosulphate (LiFeSO4F) electrode, capable of hi...
The ionic liquid (IL) N-methyl-N-butylmorpholinium bis(fluorosulfonyl)imide (C4mmor FSI) is examined...
Ionothermal synthesis has recently been used to prepare a fluorosulfate (LiFeSO4 F) capable of rever...
The use of ionic liquids (ILs) as electrolytes for lithium metal secondary batteries was investigate...
The development of new materials for secondary batteries is nowadays one of the most active fields i...
In the quest for next-generation cathodes for Li-ion batteries, our group has come up with a novel m...
International audienceSearching for possible new cathode materials with the ability to outperform Li...
We demonstrate that Li+ hopping conduction, which cannot be explained by conventional models i.e., O...
FSI−-based ionic liquids (ILs) are promising electrolyte candidates for long-life and safe lithium m...
FSI−-based ionic liquids (ILs) are promising electrolyte candidates for long-life and safe lithium m...
Searching for possible new cathode materials with the ability to outperform LiFePO 4, our group has ...
A novel solvating ionic liquid (SIL), N-methyl N-oligo(ethylene oxide)pyrrolidinium bis(fluorosulfon...
Novel ionic liquids (ILs), which were functionalized with ether oxygens to suppress crystallization ...