International audienceThis work is devoted to the study of fundamental properties of LiFePO4 (LFP) olivine in view of the optimization of this material for its use as a positive electrode material in Li-ion batteries. The investigation of the electronic and magnetic properties appears to be successful for the detection of a small amount of impurities. By the combination of X-ray diffraction, optical spectroscopy, and magnetometry, we characterize the local structure and the morphology of LFP particles. The impact of the ferromagnetic clusters (γ-Fe2O3 or Fe2P) on the electrochemical response is examined. The electrochemical performance of the optimized LFP powders investigated at 60 °C is excellent in terms of capacity retention (153 mAh/g ...
Li-ion battery technology is currently the most efficient form of electrochemical energy storage. Th...
International audienceThe characterization of LiFePO4 and of materials synthesized by chemical delit...
Li-ion battery technology is currently the most efficient form of electrochemical energy storage. Th...
International audienceCurrently, LiFePO4 is considered a good candidate as a positive electrode in r...
International audienceLiFePO4 materials synthesized using FePO4(H2O)2 and Li2CO3 blend were optimize...
International audienceThis paper addresses the synthesis structural and electrochemical properties o...
Ce mémoire est consacré à la recherche de matériaux d'électrode positive pour batteries Li-ion et pl...
Ce mémoire est consacré à la recherche de matériaux d'électrode positive pour batteries Li-ion et pl...
The reaction evolution and kinetics of the LiFePO 4 positive electrode material is dependent on the ...
In an intensive exploration for alternative cathode materials, the olivine structure of LiFePO4 was ...
This thesis has investigated a family of olivine phosphate battery materials using various spectrosc...
LiFePO (LFP), an important member of the olivine-type lithium transition metal phosphate family, is ...
International audienceThe structure of LiFePO4 particles prepared by a new milling route has been in...
International audienceThe local structure and magnetic properties of a series of carbon-coated LiFeP...
International audienceThe local structure and magnetic properties of a series of carbon-coated LiFeP...
Li-ion battery technology is currently the most efficient form of electrochemical energy storage. Th...
International audienceThe characterization of LiFePO4 and of materials synthesized by chemical delit...
Li-ion battery technology is currently the most efficient form of electrochemical energy storage. Th...
International audienceCurrently, LiFePO4 is considered a good candidate as a positive electrode in r...
International audienceLiFePO4 materials synthesized using FePO4(H2O)2 and Li2CO3 blend were optimize...
International audienceThis paper addresses the synthesis structural and electrochemical properties o...
Ce mémoire est consacré à la recherche de matériaux d'électrode positive pour batteries Li-ion et pl...
Ce mémoire est consacré à la recherche de matériaux d'électrode positive pour batteries Li-ion et pl...
The reaction evolution and kinetics of the LiFePO 4 positive electrode material is dependent on the ...
In an intensive exploration for alternative cathode materials, the olivine structure of LiFePO4 was ...
This thesis has investigated a family of olivine phosphate battery materials using various spectrosc...
LiFePO (LFP), an important member of the olivine-type lithium transition metal phosphate family, is ...
International audienceThe structure of LiFePO4 particles prepared by a new milling route has been in...
International audienceThe local structure and magnetic properties of a series of carbon-coated LiFeP...
International audienceThe local structure and magnetic properties of a series of carbon-coated LiFeP...
Li-ion battery technology is currently the most efficient form of electrochemical energy storage. Th...
International audienceThe characterization of LiFePO4 and of materials synthesized by chemical delit...
Li-ion battery technology is currently the most efficient form of electrochemical energy storage. Th...