International audienceA series of LiMnyFe1-yPO4 samples have been prepared in the whole range 0≤y≤1. Chemical delithiation could be achieved to obtain MnyFe1-yPO4 in the range 0≤y≤0.8, keeping the same crystal phase (olivine structure, space group Pnma). The composition y=0.8 is the limit where the delithiated phase is still crystallized, but abruptly suffers strains at the molecular scale evidenced by both optical spectroscopy and X-ray diffraction. The analysis of the magnetic properties shows that all the samples are the concentration of impurities is negligible. The concentration of polarons, either holes associated to Li vacancies in LiMnyFe1-yPO4 or electrons associated to the existence of Li left in the matrix of MnyFe1-yPO4, is foun...
Substitution of iron by other transition metals within the remarkably stable olivine framework is of...
We report a comparative study of the electrochemical lithium diffusion properties within the olivine...
A series of lithium iron phosphates was synthesized via the sol–gel route. Iron phosphides, which ar...
Lithium orthophosphates of the LiMPO4 type (M = Ni, Co, Fe, and Mn) gain intensive development due t...
International audienceThis paper addresses the synthesis structural and electrochemical properties o...
AbstractThe magnetic properties of the olivine-type compounds LiMPO4 (M = Mn, Co, Ni) are probed usi...
To better understand the factors responsible for the poor electrochemical performances of the olivin...
Understanding the LiMnPO4 MnPO4 phase transition is of great interest in order to further improve t...
Olivine electrodes have been extensively studied as an important class of cathode materials for lith...
Ce mémoire est consacré à la recherche de matériaux d'électrode positive pour batteries Li-ion et pl...
We report a comparative study of the electrochemical lithium diffusion properties within the olivine...
International audienceThis work is devoted to the study of fundamental properties of LiFePO4 (LFP) o...
The phase stability of Li1-xMnPO4 (0 <= x <= 1) is investigated in this study for different Li compo...
The kinetic processes during delithiation/lithiation of LixMn0.8Fe0.2PO4 are thoroughly investigated...
The purpose of this work was investigation of the magnetic properties of lithium metallophosphates L...
Substitution of iron by other transition metals within the remarkably stable olivine framework is of...
We report a comparative study of the electrochemical lithium diffusion properties within the olivine...
A series of lithium iron phosphates was synthesized via the sol–gel route. Iron phosphides, which ar...
Lithium orthophosphates of the LiMPO4 type (M = Ni, Co, Fe, and Mn) gain intensive development due t...
International audienceThis paper addresses the synthesis structural and electrochemical properties o...
AbstractThe magnetic properties of the olivine-type compounds LiMPO4 (M = Mn, Co, Ni) are probed usi...
To better understand the factors responsible for the poor electrochemical performances of the olivin...
Understanding the LiMnPO4 MnPO4 phase transition is of great interest in order to further improve t...
Olivine electrodes have been extensively studied as an important class of cathode materials for lith...
Ce mémoire est consacré à la recherche de matériaux d'électrode positive pour batteries Li-ion et pl...
We report a comparative study of the electrochemical lithium diffusion properties within the olivine...
International audienceThis work is devoted to the study of fundamental properties of LiFePO4 (LFP) o...
The phase stability of Li1-xMnPO4 (0 <= x <= 1) is investigated in this study for different Li compo...
The kinetic processes during delithiation/lithiation of LixMn0.8Fe0.2PO4 are thoroughly investigated...
The purpose of this work was investigation of the magnetic properties of lithium metallophosphates L...
Substitution of iron by other transition metals within the remarkably stable olivine framework is of...
We report a comparative study of the electrochemical lithium diffusion properties within the olivine...
A series of lithium iron phosphates was synthesized via the sol–gel route. Iron phosphides, which ar...