International audienceDegradation of the electrochemical performance of LiFePO4 upon air exposure, assigned to a corrosion-type aging mechanism, implies the incorporation of hydroxyl groups and the formation of an amorphous tavorite-like phase at the surface. Using a carbon coating provides an efficient protection from this detrimental process but also modifies the surface in contact with the electrolyte. The formation and evolution of electrode/electrolyte interphases forming on both air-aged and carbon coated LiFePO4 are discussed based on combined quantitative 7Li, 19F MAS NMR, EIS and EELS measurements. Concerning the air-aged LiFePO4, the electrode/electrolyte interactions are dominated by the dissolution of the active material and an ...
International audienceThe impact of air exposure on LiFePO4-C nanocomposites has been investigated a...
Manganese-rich olivine LiFe0.33Mn0.67PO4 was proven to be an interesting electrode material for Li-i...
Freeze-drying method was employed in order to synthesize a LiFePO4/C composite. This method produced...
International audienceDegradation of the electrochemical performance of LiFePO4 upon air exposure, a...
International audienceDecreasing particle size ensures a good accessibility of LiFePO4 to lithium io...
International audienceAir-aged LiFePO4 exhibits an OH-rich surface that reacts with LiPF6 based elec...
International audienceThe evolution of lithium-containing species on the surface of grains of 500 nm...
International audienceAlthough LiFePO4-based chemistry has been extensively studied and developed in...
International audienceThe evolution of lithium-containing species on the surface of grains of layere...
cited By 9International audienceManganese-rich olivine LiFe0.33Mn0.67PO4 was proven to be an interes...
International audienceThe conditions in which degradation processes at the positive electrode/electr...
International audienceThe effect of H2O on carbon-coated LiFePO4 particles was investigated by chemi...
International audienceLiFePO4 has won the challenge to be the active element for the positive electr...
The solid electrolyte interphase (SEI) passivating layer that grows on all battery electrodes during...
Solid electrolyte interphase (SEI) formation in lithium ion cells prepared with advanced electrolyte...
International audienceThe impact of air exposure on LiFePO4-C nanocomposites has been investigated a...
Manganese-rich olivine LiFe0.33Mn0.67PO4 was proven to be an interesting electrode material for Li-i...
Freeze-drying method was employed in order to synthesize a LiFePO4/C composite. This method produced...
International audienceDegradation of the electrochemical performance of LiFePO4 upon air exposure, a...
International audienceDecreasing particle size ensures a good accessibility of LiFePO4 to lithium io...
International audienceAir-aged LiFePO4 exhibits an OH-rich surface that reacts with LiPF6 based elec...
International audienceThe evolution of lithium-containing species on the surface of grains of 500 nm...
International audienceAlthough LiFePO4-based chemistry has been extensively studied and developed in...
International audienceThe evolution of lithium-containing species on the surface of grains of layere...
cited By 9International audienceManganese-rich olivine LiFe0.33Mn0.67PO4 was proven to be an interes...
International audienceThe conditions in which degradation processes at the positive electrode/electr...
International audienceThe effect of H2O on carbon-coated LiFePO4 particles was investigated by chemi...
International audienceLiFePO4 has won the challenge to be the active element for the positive electr...
The solid electrolyte interphase (SEI) passivating layer that grows on all battery electrodes during...
Solid electrolyte interphase (SEI) formation in lithium ion cells prepared with advanced electrolyte...
International audienceThe impact of air exposure on LiFePO4-C nanocomposites has been investigated a...
Manganese-rich olivine LiFe0.33Mn0.67PO4 was proven to be an interesting electrode material for Li-i...
Freeze-drying method was employed in order to synthesize a LiFePO4/C composite. This method produced...