Li-ion batteries have empowered consumer electronics and are now seen as the best choice to propel forward the development of eco-friendly (hybrid) electric vehicles. To enhance the energy density, an intensive search has been made for new polyanionic compounds that have a higher potential for the Fe 2+/Fe 3+ redox couple. Herein we push this potential to 3.90 V in a new polyanionic material that crystallizes in the triplite structure by substituting as little as 5 atomic per cent of Mn for Fe in Li(Fe 1-δ Mn δ)SO 4 F. Not only is this the highest voltage reported so far for the Fe 2+/Fe 3+ redox couple, exceeding that of LiFePO 4 by 450 mV, but this new triplite phase is capable of reversibly releasing and reinserting 0.7-0.8 Li ions with ...
Li-ion battery technology is currently the most efficient form of electrochemical energy storage. Th...
International audienceWe report on the preparation and electrochemical characterization of Li2M(SO4)...
The Li-ion rechargeable battery, due to its high energy density, has driven remarkable advances in p...
Li-ion batteries have empowered consumer electronics and are now seen as the best choice to propel f...
Recently in the Li-ion battery community there has been an intense amount of attention focusing on d...
International audienceRecently in the Li-ion battery community there has been an intense amount of a...
DoctorLithium ion batteries (LIBs) are one of the most advanced energy conversion and storage techno...
Polyanion-type materials, like lithium iron phosphate, are one of the great success in the research ...
Fe-based polyanion materials such as LiFePO4 or LiFeBO3 are safe and can achieve high energy density...
The quest for new positive electrodes for rechargeable lithium-ion batteries has been escalating in ...
We report a new triplite-type iron fluoro-sulfate compound, a cation-disordered NaFeSO4F that has re...
Transition-metal fluorosulfates are currently under intense investigation for their use as anodes in...
Polyanion compounds have relatively low energy density compared to plain oxides as cathode materials...
We report on the preparation and electrochemical characterization of Li 2M(SO 4) 2 (M = Co, Fe), whe...
High-voltage generation (over 4 V versus Li+/Li) of polyanion-positive electrode materials is usuall...
Li-ion battery technology is currently the most efficient form of electrochemical energy storage. Th...
International audienceWe report on the preparation and electrochemical characterization of Li2M(SO4)...
The Li-ion rechargeable battery, due to its high energy density, has driven remarkable advances in p...
Li-ion batteries have empowered consumer electronics and are now seen as the best choice to propel f...
Recently in the Li-ion battery community there has been an intense amount of attention focusing on d...
International audienceRecently in the Li-ion battery community there has been an intense amount of a...
DoctorLithium ion batteries (LIBs) are one of the most advanced energy conversion and storage techno...
Polyanion-type materials, like lithium iron phosphate, are one of the great success in the research ...
Fe-based polyanion materials such as LiFePO4 or LiFeBO3 are safe and can achieve high energy density...
The quest for new positive electrodes for rechargeable lithium-ion batteries has been escalating in ...
We report a new triplite-type iron fluoro-sulfate compound, a cation-disordered NaFeSO4F that has re...
Transition-metal fluorosulfates are currently under intense investigation for their use as anodes in...
Polyanion compounds have relatively low energy density compared to plain oxides as cathode materials...
We report on the preparation and electrochemical characterization of Li 2M(SO 4) 2 (M = Co, Fe), whe...
High-voltage generation (over 4 V versus Li+/Li) of polyanion-positive electrode materials is usuall...
Li-ion battery technology is currently the most efficient form of electrochemical energy storage. Th...
International audienceWe report on the preparation and electrochemical characterization of Li2M(SO4)...
The Li-ion rechargeable battery, due to its high energy density, has driven remarkable advances in p...