International audienceThe impact of air exposure on LiFePO4-C nanocomposites has been investigated at moderate temperature. We show here that the storage in 120 degrees C hot air for 30 days leads not only to the material delithiation but also to the formation of an amorphous ferric phosphate side-phase, accounting for 38% of the total iron. The formed phase is found to be partially hydrated, suggesting a water-driven aging mechanism and a proposed hypothetic formula: LixFePO4(OH)(x). The side-phase displays new electrochemical activity but poor cyclability and the overall battery performance is thus deteriorated. The regeneration of pristine structure, together with the performance recovery can be achieved by a simple thermal treatment und...
The capacity loss and material decay of C6/LiFePO4 (LFP) batteries have been investigated under vari...
There are many reports on addressing the issues concerning low electronic and ionic conductivity of ...
International audienceAir-aged LiFePO4 exhibits an OH-rich surface that reacts with LiPF6 based elec...
International audienceThe changes appearing for LiFePO"4-C nano-composites exposed to atmosphere at ...
International audienceAlthough LiFePO4-based chemistry has been extensively studied and developed in...
The thermal behavior under air of LiFePO4-based powders was investigated through the combination of ...
Freeze-drying method was employed in order to synthesize a LiFePO4/C composite. This method produced...
Olivine-like LiMPO4 (M=Fe, Mn, Co) compounds [1] are now one of the most promising cathode material ...
International audienceThe effect of H2O on carbon-coated LiFePO4 particles was investigated by chemi...
International audienceThe last decades LiFePO4 (triphylite) has been extensively studied due to inte...
International audienceDegradation of the electrochemical performance of LiFePO4 upon air exposure, a...
Amorphous LiFePO4 was obtained by lithiation of FePO4 synthesized by spontaneous precipitation from ...
Prepared by the deposition of a solid electrode and electrolyte, all-solid-state batteries are a pro...
The capacity loss and material decay of C6/LiFePO4 (LFP) batteries have been investigated under vari...
LiFePO4 has been under intense scrutiny over the past decade because it stands as an attractive posi...
The capacity loss and material decay of C6/LiFePO4 (LFP) batteries have been investigated under vari...
There are many reports on addressing the issues concerning low electronic and ionic conductivity of ...
International audienceAir-aged LiFePO4 exhibits an OH-rich surface that reacts with LiPF6 based elec...
International audienceThe changes appearing for LiFePO"4-C nano-composites exposed to atmosphere at ...
International audienceAlthough LiFePO4-based chemistry has been extensively studied and developed in...
The thermal behavior under air of LiFePO4-based powders was investigated through the combination of ...
Freeze-drying method was employed in order to synthesize a LiFePO4/C composite. This method produced...
Olivine-like LiMPO4 (M=Fe, Mn, Co) compounds [1] are now one of the most promising cathode material ...
International audienceThe effect of H2O on carbon-coated LiFePO4 particles was investigated by chemi...
International audienceThe last decades LiFePO4 (triphylite) has been extensively studied due to inte...
International audienceDegradation of the electrochemical performance of LiFePO4 upon air exposure, a...
Amorphous LiFePO4 was obtained by lithiation of FePO4 synthesized by spontaneous precipitation from ...
Prepared by the deposition of a solid electrode and electrolyte, all-solid-state batteries are a pro...
The capacity loss and material decay of C6/LiFePO4 (LFP) batteries have been investigated under vari...
LiFePO4 has been under intense scrutiny over the past decade because it stands as an attractive posi...
The capacity loss and material decay of C6/LiFePO4 (LFP) batteries have been investigated under vari...
There are many reports on addressing the issues concerning low electronic and ionic conductivity of ...
International audienceAir-aged LiFePO4 exhibits an OH-rich surface that reacts with LiPF6 based elec...