To find new cathode materials for future applications in lithium-ion batteries, lithium transition metal fluorides represent an interesting class of materials. In principle the Li intercalation voltage can be increased by replacing oxygen in the cathode host structure with the more electronegative fluorine. A facile pyrolytic sol–gel process with trifluoroacetic acid as fluorine source was established to synthesize monoclinic Li3FeF6 using nontoxic chemicals. The acicular Li3FeF6 powder was characterized with X-ray diffraction and a detailed structure model was calculated by Rietveld analysis. For the preparationof cathode films to cycle versus lithium monoclinic Li3FeF6 was ball milled with carbon and binder down to nanoscale. After 100 cy...
FeF3 is one of the candidates for next-generation cathode materials for Li rechargeable batteries du...
LiNiFeF6 was used as cathode material in lithium ion cells and studied by in situ X ray diffraction ...
FeF₃ possesses a high theoretical capacity of 712 mAh g⁻¹ owing to the three-electron reaction. Howe...
To replace common commercial lithium metal oxides or polyanionic cathode materials, lithium transiti...
A sol-gel route for ternary lithium fluorides of transition metals (M) is presented allowing the syn...
Lithium transition metal oxides are commonly used as cathode materials in modern mobile and stationa...
Dieser Beitrag ist mit Zustimmung des Rechteinhabers aufgrund einer (DFG geförderten) Allianz- bzw. ...
Metal fluorides with high redox potential and capacity from strong metal–fluoride bond and conversio...
Owing to their high theoretical capacity, metal fluorides have attracted significant interest as mat...
More energy dense lithium ion batteries are essential for the production of long-range electric vehi...
Facile synthesis of rhombohedral type FeF3 introduced via two consecutive steps is introduced: i) ac...
We report Na3FeF6 as a novel cathode material for sodium and lithium batteries. The material is synt...
Metal fluorides, promising lithium-ion battery cathode materials, have been classified as conversion...
The cycle lives for cathodes of nanocrystalline iron trifluoride (FeF_3) were measured in rechargeab...
The lithium-ion batteries are the current solution for electrochemical energy storage. However, thei...
FeF3 is one of the candidates for next-generation cathode materials for Li rechargeable batteries du...
LiNiFeF6 was used as cathode material in lithium ion cells and studied by in situ X ray diffraction ...
FeF₃ possesses a high theoretical capacity of 712 mAh g⁻¹ owing to the three-electron reaction. Howe...
To replace common commercial lithium metal oxides or polyanionic cathode materials, lithium transiti...
A sol-gel route for ternary lithium fluorides of transition metals (M) is presented allowing the syn...
Lithium transition metal oxides are commonly used as cathode materials in modern mobile and stationa...
Dieser Beitrag ist mit Zustimmung des Rechteinhabers aufgrund einer (DFG geförderten) Allianz- bzw. ...
Metal fluorides with high redox potential and capacity from strong metal–fluoride bond and conversio...
Owing to their high theoretical capacity, metal fluorides have attracted significant interest as mat...
More energy dense lithium ion batteries are essential for the production of long-range electric vehi...
Facile synthesis of rhombohedral type FeF3 introduced via two consecutive steps is introduced: i) ac...
We report Na3FeF6 as a novel cathode material for sodium and lithium batteries. The material is synt...
Metal fluorides, promising lithium-ion battery cathode materials, have been classified as conversion...
The cycle lives for cathodes of nanocrystalline iron trifluoride (FeF_3) were measured in rechargeab...
The lithium-ion batteries are the current solution for electrochemical energy storage. However, thei...
FeF3 is one of the candidates for next-generation cathode materials for Li rechargeable batteries du...
LiNiFeF6 was used as cathode material in lithium ion cells and studied by in situ X ray diffraction ...
FeF₃ possesses a high theoretical capacity of 712 mAh g⁻¹ owing to the three-electron reaction. Howe...