Recently in the Li-ion battery community there has been an intense amount of attention focusing on developing positive electrodes which operate on the Fe 2+/Fe 3+ redox potential given that the environmental and economic advantages of Fe-based compounds compared to other transition metals are tremendous. Here we report that we have succeeded in preparing for the first time LiFeSO 4F in the triplite structure which shows an open circuit voltage of 3.9 V versus Li with a reversible capacity of approximately 85 mA h g - 1, still well below the theoretical value of 148 mA h g - 1 due to poor electrode kinetics. Nevertheless, we additionally found that the volume change on removal of Li is 0.6%. Once optimized, this triplite phase of LiFeSO 4F c...
Transition-metal fluorosulfates are currently under intense investigation for their use as anodes in...
Li-ion battery technology is currently the most efficient form of electrochemical energy storage. Th...
International audienceRecently, the LiFeSO4F material has been reported as the highest potential Fe-...
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...
Li-ion batteries have empowered consumer electronics and are now seen as the best choice to propel f...
In this study, triplite 3.9V-LiFeSO4F in single step solid-state reaction with various precursors wa...
International audienceLi-ion batteries have empowered consumer electronics and are now seen as the b...
We report on the preparation and electrochemical characterization of Li 2M(SO 4) 2 (M = Co, Fe), whe...
It is reported that cation disordering in triplite LiFeSO4F can be activated by Li/Fe rearrangement ...
Fe-based polyanion materials such as LiFePO4 or LiFeBO3 are safe and can achieve high energy density...
International audienceOwing to the attractive energy density, high reversibility, and long product l...
Recently, the LiFeSO 4F material has been reported as the highest potential Fe-based cathode materia...
Li-ion batteries have contributed to the commercial success of portable electronics, and are now in ...
International audienceWe report on the preparation and electrochemical characterization of Li2M(SO4)...
Transition-metal fluorosulfates are currently under intense investigation for their use as anodes in...
Li-ion battery technology is currently the most efficient form of electrochemical energy storage. Th...
International audienceRecently, the LiFeSO4F material has been reported as the highest potential Fe-...
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...
Li-ion batteries have empowered consumer electronics and are now seen as the best choice to propel f...
In this study, triplite 3.9V-LiFeSO4F in single step solid-state reaction with various precursors wa...
International audienceLi-ion batteries have empowered consumer electronics and are now seen as the b...
We report on the preparation and electrochemical characterization of Li 2M(SO 4) 2 (M = Co, Fe), whe...
It is reported that cation disordering in triplite LiFeSO4F can be activated by Li/Fe rearrangement ...
Fe-based polyanion materials such as LiFePO4 or LiFeBO3 are safe and can achieve high energy density...
International audienceOwing to the attractive energy density, high reversibility, and long product l...
Recently, the LiFeSO 4F material has been reported as the highest potential Fe-based cathode materia...
Li-ion batteries have contributed to the commercial success of portable electronics, and are now in ...
International audienceWe report on the preparation and electrochemical characterization of Li2M(SO4)...
Transition-metal fluorosulfates are currently under intense investigation for their use as anodes in...
Li-ion battery technology is currently the most efficient form of electrochemical energy storage. Th...
International audienceRecently, the LiFeSO4F material has been reported as the highest potential Fe-...