The polyanion cathodes for Li-ion batteries, namely LiFePO4, Li2FeP2O7 and Li2FeSiO4, were synthesized by very short high-temperature treatment (approximately several minutes) and subsequent quenching. Methylcellulose—a polymer with thermally driven water solubility—was used as the medium in which the precursor solutions were dispersed prior to high temperature treatment. The methylcellulose pyrolytically decomposes to carbon, thus producing the polyanion material/carbon composites of LiFePO4/C, Li2FeP2O7/C and Li2FeSiO4/C. The obtained powders have reduced crystallinity and significant microstructural characteristics: low crystallite size and notable microstrain. They exhibit stable electrochemical performances in both aqueous and organic ...
A LiFe0.6Mn0.4PO4 (LFMP) cathode exploiting the olivine structure is herein synthesized and characte...
This work reports a comprehensive study of a novel polyol method that can successfully synthesize la...
Followed by decades of successful efforts in developing cathode materials for high specific capacity...
The polyanion cathodes for Li-ion batteries, namely LiFePO4, Li2FeP2O7 and Li2FeSiO4, were synthesiz...
The polyanion cathodes for Li-ion batteries, namely LiFePO4, Li2FeP2O7 and Li2FeSiO4, were synthesiz...
Since Padhi et al. reported the electrochemical properties of LiFePO4 in 1997 [1], polyanion cathode...
The key parameters related to cathode materials for commercial use are a high specific capacity, goo...
The key parameters related to cathode materials for commercial use are a high specific capacity, goo...
The key parameters related to cathode materials for commercial use are a high specific capacity, goo...
The key parameters related to cathode materials for commercial use are a high specific capacity, goo...
AbstractMonoclinic phase LiFeSO4F was synthesized by a simple fast solid state reaction from the mix...
Air pollution is a global problem. Transportation is one of the major contributors. Using electric v...
Polyanion-type materials are considered as one of the most promising cathode materials for power bat...
ABSTRACT: Carbon-coated lithium iron phosphate (LiFePO4/C) composites are synthesized by the modifie...
In this work, LiFePO4/C composite were synthesized via a green route by using Iron (III) oxide (Fe2O...
A LiFe0.6Mn0.4PO4 (LFMP) cathode exploiting the olivine structure is herein synthesized and characte...
This work reports a comprehensive study of a novel polyol method that can successfully synthesize la...
Followed by decades of successful efforts in developing cathode materials for high specific capacity...
The polyanion cathodes for Li-ion batteries, namely LiFePO4, Li2FeP2O7 and Li2FeSiO4, were synthesiz...
The polyanion cathodes for Li-ion batteries, namely LiFePO4, Li2FeP2O7 and Li2FeSiO4, were synthesiz...
Since Padhi et al. reported the electrochemical properties of LiFePO4 in 1997 [1], polyanion cathode...
The key parameters related to cathode materials for commercial use are a high specific capacity, goo...
The key parameters related to cathode materials for commercial use are a high specific capacity, goo...
The key parameters related to cathode materials for commercial use are a high specific capacity, goo...
The key parameters related to cathode materials for commercial use are a high specific capacity, goo...
AbstractMonoclinic phase LiFeSO4F was synthesized by a simple fast solid state reaction from the mix...
Air pollution is a global problem. Transportation is one of the major contributors. Using electric v...
Polyanion-type materials are considered as one of the most promising cathode materials for power bat...
ABSTRACT: Carbon-coated lithium iron phosphate (LiFePO4/C) composites are synthesized by the modifie...
In this work, LiFePO4/C composite were synthesized via a green route by using Iron (III) oxide (Fe2O...
A LiFe0.6Mn0.4PO4 (LFMP) cathode exploiting the olivine structure is herein synthesized and characte...
This work reports a comprehensive study of a novel polyol method that can successfully synthesize la...
Followed by decades of successful efforts in developing cathode materials for high specific capacity...