International audienceSearching for possible new cathode materials with the ability to outperform LiFePO4, our group has recently discovered LiFeSO4F, a novel metal fluorosulphate compound. Needing no further optimization, it delivers excellent reversible capacity (~140 mAh/g) involving a 3.6 V FeII/III redox plateau. This parent fluorosulphate phase has been synthesized by three different routes, namely ionothermal synthesis, solid-state synthesis and polyol-assisted synthesis. These low temperature processing routes are described focusing on synthesis of LiFeSO4F. Furthermore, these methods were successfully employed to unravel other LiMSO4F compounds (M = Co/Ni/Mn/Zn) as well as sodium-based metal fluorosulphate NaMSO4F compounds (M = Fe...
To achieve the desirable dual characteristics of high-capacity performance and low-cost production f...
International audienceThe Li-ion rechargeable battery, due to its high energy density, has driven re...
The Li-ion rechargeable battery, due to its high energy density, has driven remarkable advances in p...
International audienceSearching for possible new cathode materials with the ability to outperform Li...
Searching for possible new cathode materials with the ability to outperform LiFePO 4, our group has ...
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...
In the quest for next-generation cathodes for Li-ion batteries, our group has come up with a novel m...
Ionothermal synthesis has recently been used to prepare a fluorosulfate (LiFeSO4 F) capable of rever...
International audienceOwing to the attractive energy density, high reversibility, and long product l...
Our work in metal fluorosulphate chemistry, which was triggered by the discovery of the tavorite-pha...
International audienceOur work in metal fluorosulphate chemistry, which was triggered by the discove...
LiFeSO4 F, which can be synthesized either via an ionothermal or solid-state route, stands as a poss...
International audienceThe recent discovery of electrochemical activity at 3.6 V vs Li+/Li0 in LiFeSO...
In this study, triplite 3.9V-LiFeSO4F in single step solid-state reaction with various precursors wa...
To achieve the desirable dual characteristics of high-capacity performance and low-cost production f...
International audienceThe Li-ion rechargeable battery, due to its high energy density, has driven re...
The Li-ion rechargeable battery, due to its high energy density, has driven remarkable advances in p...
International audienceSearching for possible new cathode materials with the ability to outperform Li...
Searching for possible new cathode materials with the ability to outperform LiFePO 4, our group has ...
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...
In the quest for next-generation cathodes for Li-ion batteries, our group has come up with a novel m...
Ionothermal synthesis has recently been used to prepare a fluorosulfate (LiFeSO4 F) capable of rever...
International audienceOwing to the attractive energy density, high reversibility, and long product l...
Our work in metal fluorosulphate chemistry, which was triggered by the discovery of the tavorite-pha...
International audienceOur work in metal fluorosulphate chemistry, which was triggered by the discove...
LiFeSO4 F, which can be synthesized either via an ionothermal or solid-state route, stands as a poss...
International audienceThe recent discovery of electrochemical activity at 3.6 V vs Li+/Li0 in LiFeSO...
In this study, triplite 3.9V-LiFeSO4F in single step solid-state reaction with various precursors wa...
To achieve the desirable dual characteristics of high-capacity performance and low-cost production f...
International audienceThe Li-ion rechargeable battery, due to its high energy density, has driven re...
The Li-ion rechargeable battery, due to its high energy density, has driven remarkable advances in p...