Metal fluorides usually have a large electronegativity and are promising electrode materials for high-power lithium-ion batteries. However, like other conversion-reaction-based materials, large volumetric expansions and large capacity losses in cycling are the major issues for metal fluorides. Here, we explore substitution of Ni with Cu for binary NiF2 and its effects on the electrochemical properties. By in situ transmission electron microscopy, the structural evolutions of several ternary metal fluorides with different Cu/Ni ratios are observed and correlated with their electrochemical properties. With increased Cu substitution from 0 to 25 wt %, the areal expansion during the first lithiation is reduced. Meanwhile, the fluorine loss (due...
More energy dense lithium ion batteries are essential for the production of long-range electric vehi...
Cathode materials that can cycle >1 Li<sup>+</sup> per transition metal are of substantial interest ...
Conversion-type transition metal fluoride cathodes offer a 200%–300% higher theoretical energy densi...
Metal fluorides usually have a large electronegativity and are promising electrode materials for hig...
Conversion materials for lithium ion batteries have recently attracted considerable attention due to...
Transition metal fluorides are an appealing alternative to conventional intercalation compounds for ...
Conversion materials for lithium ion batteries have recently attracted considerable attention due to...
Transition metal fluorides are potential candidates for advanced Li ion battery cathodes due to thei...
International audienceConversion cathodes such as metal fluorides are particularly interesting for t...
Materials that undergo a conversion reaction with lithium (e.g., metal fluorides MF2: M = Fe, Cu, .....
Metal fluorides, promising lithium-ion battery cathode materials, have been classified as conversion...
The Li-ion battery is one of the most important rechargeable energy storage devices due to its high ...
energy of 1874 Wh/kg (600 Wh/Kg for LiCoO2). However, the electrochemical performance of CuF2 is dra...
This thesis presents an in-depth investigation of the conversion reaction mechanism of cobalt difluo...
With the most recent development of ultrahigh capacity anodes, such as Li- or Si-based anodes, metal...
More energy dense lithium ion batteries are essential for the production of long-range electric vehi...
Cathode materials that can cycle >1 Li<sup>+</sup> per transition metal are of substantial interest ...
Conversion-type transition metal fluoride cathodes offer a 200%–300% higher theoretical energy densi...
Metal fluorides usually have a large electronegativity and are promising electrode materials for hig...
Conversion materials for lithium ion batteries have recently attracted considerable attention due to...
Transition metal fluorides are an appealing alternative to conventional intercalation compounds for ...
Conversion materials for lithium ion batteries have recently attracted considerable attention due to...
Transition metal fluorides are potential candidates for advanced Li ion battery cathodes due to thei...
International audienceConversion cathodes such as metal fluorides are particularly interesting for t...
Materials that undergo a conversion reaction with lithium (e.g., metal fluorides MF2: M = Fe, Cu, .....
Metal fluorides, promising lithium-ion battery cathode materials, have been classified as conversion...
The Li-ion battery is one of the most important rechargeable energy storage devices due to its high ...
energy of 1874 Wh/kg (600 Wh/Kg for LiCoO2). However, the electrochemical performance of CuF2 is dra...
This thesis presents an in-depth investigation of the conversion reaction mechanism of cobalt difluo...
With the most recent development of ultrahigh capacity anodes, such as Li- or Si-based anodes, metal...
More energy dense lithium ion batteries are essential for the production of long-range electric vehi...
Cathode materials that can cycle >1 Li<sup>+</sup> per transition metal are of substantial interest ...
Conversion-type transition metal fluoride cathodes offer a 200%–300% higher theoretical energy densi...