Fluoride cathode materials that undergo conversion reactions such as FeF3 have attracted increasing interest owing to their high energy density. However, the ability of FeF3 to maintain a high capacity over repeated cycles and the decisive factor dominating conversion reactions have yet to be elucidated. By optimizing the choice of lithium salts and electrolyte solutions, we are able to achieve good capacity retention for an FeF3-based cathode, that is, 4.5-fold enhancement compared with a model electrode (372 mAh/g after 30 cycles). The relationship between the capacity and the particle size of the Fe nanoparticles after discharge is well explained by the order parameter description. These findings provide exciting guidelines for achieving...
Systematical studies of the electrochemical performance of CFx-derived carbon–FeF2 nanocomposites fo...
In this paper, we demonstrate the preparation of reduced graphene oxide (rGO) decorated with FeF3 na...
Conversion-type transition metal fluoride cathodes offer a 200%–300% higher theoretical energy densi...
The application of metal fluorides as cathodes for lithium ion batteries has been hindered by inadeq...
The application of conversion materials in electrochemical storage devices is one of the few options...
The cycle lives for cathodes of nanocrystalline iron trifluoride (FeF_3) were measured in rechargeab...
FeF3 is a promising cathodematerial for lithium ion batteries but its poor electronic conductivity m...
As an alternative to commercial Ni- and Co-based intercalation-type cathode materials, conversion-ty...
More energy dense lithium ion batteries are essential for the production of long-range electric vehi...
The cycle lives for cathodes of nanocrystalline iron trifluoride (FeF3) were measured in rechargeabl...
We report novel electrode architectures for high capacity multivalent conversion compounds such as i...
Iron fluoride is a kind of high-capacity conversion-type cathode material for lithium-ion batteries ...
Metal fluorides with high redox potential and capacity from strong metal–fluoride bond and conversio...
In this communication, for the first time, we demonstrate the fast and facile preparation of porous ...
Transition metal fluoride (TMF) conversion cathodes, with high energy density, are recognized as pro...
Systematical studies of the electrochemical performance of CFx-derived carbon–FeF2 nanocomposites fo...
In this paper, we demonstrate the preparation of reduced graphene oxide (rGO) decorated with FeF3 na...
Conversion-type transition metal fluoride cathodes offer a 200%–300% higher theoretical energy densi...
The application of metal fluorides as cathodes for lithium ion batteries has been hindered by inadeq...
The application of conversion materials in electrochemical storage devices is one of the few options...
The cycle lives for cathodes of nanocrystalline iron trifluoride (FeF_3) were measured in rechargeab...
FeF3 is a promising cathodematerial for lithium ion batteries but its poor electronic conductivity m...
As an alternative to commercial Ni- and Co-based intercalation-type cathode materials, conversion-ty...
More energy dense lithium ion batteries are essential for the production of long-range electric vehi...
The cycle lives for cathodes of nanocrystalline iron trifluoride (FeF3) were measured in rechargeabl...
We report novel electrode architectures for high capacity multivalent conversion compounds such as i...
Iron fluoride is a kind of high-capacity conversion-type cathode material for lithium-ion batteries ...
Metal fluorides with high redox potential and capacity from strong metal–fluoride bond and conversio...
In this communication, for the first time, we demonstrate the fast and facile preparation of porous ...
Transition metal fluoride (TMF) conversion cathodes, with high energy density, are recognized as pro...
Systematical studies of the electrochemical performance of CFx-derived carbon–FeF2 nanocomposites fo...
In this paper, we demonstrate the preparation of reduced graphene oxide (rGO) decorated with FeF3 na...
Conversion-type transition metal fluoride cathodes offer a 200%–300% higher theoretical energy densi...