The recent discovery of electrochemical activity at 3.6 V vs Li<sup>+</sup>/Li<sup>0</sup> in LiFeSO<sub>4</sub>F has generated widespread research activity in this new family of fluorosulfate electrode materials aiming at either increasing the Fe<sup>3+</sup>/Fe<sup>2+</sup> redox potential, searching for new active members, or extending this family to hydroxyl-fluorosulfates. Here we present a new low temperature single step synthesis of FeSO<sub>4</sub>F<sub>1–<i>y</i></sub>OH<sub><i>y</i></sub> phases using FeF<sub>3</sub> and Fe<sub>2</sub>(SO<sub>4</sub>)<sub>3</sub>·<i>n</i>H<sub>2</sub>O as precursors. Using thorough chemical analytical techniques to test for F<sup>–</sup> content in conjunction with Mössbauer measurements, we demo...
Searching for possible new cathode materials with the ability to outperform LiFePO 4, our group has ...
Fe-based polyanion materials such as LiFePO4 or LiFeBO3 are safe and can achieve high energy density...
International audienceThe Li-ion rechargeable battery, due to its high energy density, has driven re...
International audienceThe recent discovery of electrochemical activity at 3.6 V vs Li+/Li0 in LiFeSO...
Ionothermal synthesis has recently been used to prepare a fluorosulfate (LiFeSO4 F) capable of rever...
International audienceHigh-performing Fe-based electrodes for Li-based batteries are eagerly pursued...
High-performing Fe-based electrodes for Li-based batteries are eagerly pursued because of the abunda...
LiFeSO4 F, which can be synthesized either via an ionothermal or solid-state route, stands as a poss...
International audienceOwing to the attractive energy density, high reversibility, and long product l...
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...
The quest for new positive electrodes for rechargeable lithium-ion batteries has been escalating in ...
Li-ion battery technology is currently the most efficient form of electrochemical energy storage. Th...
Searching for possible new cathode materials with the ability to outperform LiFePO 4, our group has ...
Fe-based polyanion materials such as LiFePO4 or LiFeBO3 are safe and can achieve high energy density...
International audienceThe Li-ion rechargeable battery, due to its high energy density, has driven re...
International audienceThe recent discovery of electrochemical activity at 3.6 V vs Li+/Li0 in LiFeSO...
Ionothermal synthesis has recently been used to prepare a fluorosulfate (LiFeSO4 F) capable of rever...
International audienceHigh-performing Fe-based electrodes for Li-based batteries are eagerly pursued...
High-performing Fe-based electrodes for Li-based batteries are eagerly pursued because of the abunda...
LiFeSO4 F, which can be synthesized either via an ionothermal or solid-state route, stands as a poss...
International audienceOwing to the attractive energy density, high reversibility, and long product l...
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...
The quest for new positive electrodes for rechargeable lithium-ion batteries has been escalating in ...
Li-ion battery technology is currently the most efficient form of electrochemical energy storage. Th...
Searching for possible new cathode materials with the ability to outperform LiFePO 4, our group has ...
Fe-based polyanion materials such as LiFePO4 or LiFeBO3 are safe and can achieve high energy density...
International audienceThe Li-ion rechargeable battery, due to its high energy density, has driven re...