To achieve the desirable dual characteristics of high-capacity performance and low-cost production for the batteries of tomorrow, leveraging of multi-redox reactions of Earth-abundant transition metals in electrodes is fundamentally important. Here we identify an amorphous iron fluorosulfate electrode, a-LiFeSO4F, that can exploit both the intercalation and conversion reactions with a stable reversibility. The a-LiFeSO4F electrode delivers a capacity of 360 mAh g(-1) with similar to 98.6% capacity retention after 200 cycles even at an elevated temperature (60 degrees C). In contrast to the conventional intercalation/conversion-type electrodes, the reversible cycle stability is attributed to the inherent amorphous structure of a-LiFeSO4F, wh...
Transition metal based conversion compounds have potentially higher energy density due to multiple r...
LiFeSO4 F, which can be synthesized either via an ionothermal or solid-state route, stands as a poss...
Intercalation-type electrodes have now been commonly employed in todayâ s batteries due to their ca...
To achieve the desirable dual characteristics of high-capacity performance and low-cost production f...
Ionothermal synthesis has recently been used to prepare a fluorosulfate (LiFeSO4 F) capable of rever...
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 ...
International audienceThe recent discovery of electrochemical activity at 3.6 V vs Li+/Li0 in LiFeSO...
We report novel electrode architectures for high capacity multivalent conversion compounds such as i...
Recently reversible batteries based on fluoride ions as a charge carriers have attracted some attent...
The discovery of high-performance cathode materials is imperative for advances in current lithium-io...
Transition-metal fluorosulfates are currently under intense investigation for their use as anodes in...
Fe-based polyanion materials such as LiFePO4 or LiFeBO3 are safe and can achieve high energy density...
More energy dense lithium ion batteries are essential for the production of long-range electric vehi...
International audienceOwing to the attractive energy density, high reversibility, and long product l...
Transition metal based conversion compounds have potentially higher energy density due to multiple r...
LiFeSO4 F, which can be synthesized either via an ionothermal or solid-state route, stands as a poss...
Intercalation-type electrodes have now been commonly employed in todayâ s batteries due to their ca...
To achieve the desirable dual characteristics of high-capacity performance and low-cost production f...
Ionothermal synthesis has recently been used to prepare a fluorosulfate (LiFeSO4 F) capable of rever...
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 ...
International audienceThe recent discovery of electrochemical activity at 3.6 V vs Li+/Li0 in LiFeSO...
We report novel electrode architectures for high capacity multivalent conversion compounds such as i...
Recently reversible batteries based on fluoride ions as a charge carriers have attracted some attent...
The discovery of high-performance cathode materials is imperative for advances in current lithium-io...
Transition-metal fluorosulfates are currently under intense investigation for their use as anodes in...
Fe-based polyanion materials such as LiFePO4 or LiFeBO3 are safe and can achieve high energy density...
More energy dense lithium ion batteries are essential for the production of long-range electric vehi...
International audienceOwing to the attractive energy density, high reversibility, and long product l...
Transition metal based conversion compounds have potentially higher energy density due to multiple r...
LiFeSO4 F, which can be synthesized either via an ionothermal or solid-state route, stands as a poss...
Intercalation-type electrodes have now been commonly employed in todayâ s batteries due to their ca...