International audienceHerein, we report a direct recycling process of the spent LiFePO4 by direct room temperature chemical lithiation. A fine characterization of a recovered LFP cathode from a spent commercial battery demonstrates that the end of life of the battery is mainly due to the lithium loss, while the structure of the LFP cathode material is globally preserved. It is shown here that such a cathode can be efficiently recovered by direct lithiation in solution using LiI in different solvents (acetonitrile, ethanol, cyclohexane, methanol, DMSO and propan-1,2-ol) with optimized experimental parameters. The best electrochemical performance is obtained with ethanol, one of the greenest and cheapest solvents, without any additional heat ...
In recent years, the recovery of metals from spent lithium ion batteries (LIBs) has become increasin...
The transformation of energy structure is deemed as a paramount strategy in accomplishing the ambiti...
A direct regeneration of cathode materials from spent LiFePO4 batteries using a solid phase sinterin...
International audienceHerein, we report a direct recycling process of the spent LiFePO4 by direct ro...
With the exponential production of lithium-ion batteries for electric and electronic applications, c...
Lithium iron phosphate batteries (LFP), widely used as power sources, are forecasted to reach the te...
The demand for LiFePO4 (LFP)-type batteries have increased remarkably in energy storage devices due ...
The demand for LiFePO4 (LFP)-type batteries have increased remarkably in energy storage devices due ...
A direct regeneration of cathode materials from spent LiFePO4 batteries using a solid phase sinterin...
To recycle the sharply growing spent lithium-ion batteries and alleviate concerns over shortages of ...
Recycling and regenerating spent lithium-ion batteries are significant in addressing raw material sh...
Recycling and regenerating spent lithium-ion batteries are significant in addressing raw material sh...
Development in the field of electric vehicles brought great interest in recycling the spent Li-ion b...
The environmental and economic benefits of recycling spent LiFePO4 batteries are becoming increasing...
This paper describes an environmentally friendly process for the recovery of LiFePO4 cathode materia...
In recent years, the recovery of metals from spent lithium ion batteries (LIBs) has become increasin...
The transformation of energy structure is deemed as a paramount strategy in accomplishing the ambiti...
A direct regeneration of cathode materials from spent LiFePO4 batteries using a solid phase sinterin...
International audienceHerein, we report a direct recycling process of the spent LiFePO4 by direct ro...
With the exponential production of lithium-ion batteries for electric and electronic applications, c...
Lithium iron phosphate batteries (LFP), widely used as power sources, are forecasted to reach the te...
The demand for LiFePO4 (LFP)-type batteries have increased remarkably in energy storage devices due ...
The demand for LiFePO4 (LFP)-type batteries have increased remarkably in energy storage devices due ...
A direct regeneration of cathode materials from spent LiFePO4 batteries using a solid phase sinterin...
To recycle the sharply growing spent lithium-ion batteries and alleviate concerns over shortages of ...
Recycling and regenerating spent lithium-ion batteries are significant in addressing raw material sh...
Recycling and regenerating spent lithium-ion batteries are significant in addressing raw material sh...
Development in the field of electric vehicles brought great interest in recycling the spent Li-ion b...
The environmental and economic benefits of recycling spent LiFePO4 batteries are becoming increasing...
This paper describes an environmentally friendly process for the recovery of LiFePO4 cathode materia...
In recent years, the recovery of metals from spent lithium ion batteries (LIBs) has become increasin...
The transformation of energy structure is deemed as a paramount strategy in accomplishing the ambiti...
A direct regeneration of cathode materials from spent LiFePO4 batteries using a solid phase sinterin...