The Li-ion rechargeable battery, due to its high energy density, has driven remarkable advances in portable electronics. Moving toward more sustainable electrodes could make this technology even more attractive to large-volume applications. We present here a new family of 3d-metal hydroxysulfates of general formula LiMSO4OH (M = Fe, Co, and Mn) among which (i) LiFeSO4OH reversibly releases 0.7 Li+ at an average potential of 3.6 V vs Li+/Li0, slightly higher than the potential of currently lauded LiFePO4 (3.45 V) electrode material, and (ii) LiCoSO4OH shows a redox activity at 4.7 V vs Li +/Li0. Besides, these compounds can be easily made at temperatures near 200 C via a synthesis process that enlists a new intermediate phase of composition ...
Lithium ion batteries lie at the heart of many of the portable electronics and automobiles in the mo...
International audienceSearching for possible new cathode materials with the ability to outperform Li...
We report on the preparation and electrochemical characterization of Li 2M(SO 4) 2 (M = Co, Fe), whe...
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 audienceOwing to the attractive energy density, high reversibility, and long product l...
Electrochemical storage has become an integral part of our mobile society and great hopes are being ...
In the quest for next-generation cathodes for Li-ion batteries, our group has come up with a novel m...
In this thesis, two recently discovered polymorphs of LiFeSO4F, adopting a tavorite- and triplite-ty...
Li-ion battery technology is currently the most efficient form of electrochemical energy storage. Th...
Li-ion batteries have empowered consumer electronics and are now seen as the best choice to propel f...
Li-ion batteries have empowered consumer electronics and are now seen as the best choice to propel f...
Transition-metal fluorosulfates are currently under intense investigation for their use as anodes in...
Searching for possible new cathode materials with the ability to outperform LiFePO 4, our group has ...
Polyanion-type materials, like lithium iron phosphate, are one of the great success in the research ...
Lithium ion batteries lie at the heart of many of the portable electronics and automobiles in the mo...
International audienceSearching for possible new cathode materials with the ability to outperform Li...
We report on the preparation and electrochemical characterization of Li 2M(SO 4) 2 (M = Co, Fe), whe...
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 audienceOwing to the attractive energy density, high reversibility, and long product l...
Electrochemical storage has become an integral part of our mobile society and great hopes are being ...
In the quest for next-generation cathodes for Li-ion batteries, our group has come up with a novel m...
In this thesis, two recently discovered polymorphs of LiFeSO4F, adopting a tavorite- and triplite-ty...
Li-ion battery technology is currently the most efficient form of electrochemical energy storage. Th...
Li-ion batteries have empowered consumer electronics and are now seen as the best choice to propel f...
Li-ion batteries have empowered consumer electronics and are now seen as the best choice to propel f...
Transition-metal fluorosulfates are currently under intense investigation for their use as anodes in...
Searching for possible new cathode materials with the ability to outperform LiFePO 4, our group has ...
Polyanion-type materials, like lithium iron phosphate, are one of the great success in the research ...
Lithium ion batteries lie at the heart of many of the portable electronics and automobiles in the mo...
International audienceSearching for possible new cathode materials with the ability to outperform Li...
We report on the preparation and electrochemical characterization of Li 2M(SO 4) 2 (M = Co, Fe), whe...