LiNi1-yTiyO2 (y ≤ 0.15) layered oxides were synthesized at high temperature by solid-state reactions. Rietveld refinements of their X-ray and neutron diffraction patterns showed that these phases were characterized by an α-NaFeO2-type structure with the following cationic distribution: (Li1-zNi2+z)3b(Ti4+tNi2+t+zNi3+1-z-2t)3aO2 [t = y(1 + z)]. The amount of Ni2+ ions in the lithium site increases with y. A magnetic study confirmed the presence of paramagnetic ions in the interslab space and, therefore, the cationic distribution. These materials used as positive electrode in lithium batteries show reversible behavior. A large decrease of the capacity is observed with increasing y, because of the presence of extra nickel ions in the lithium s...
The Li−Ni−O phase diagram contains a variety of compounds, most of which are electrochemically activ...
New layered cathode materials, Li₀.₉Ni₀.₄₅Ti₀.₅₅O₂, were synthesized by means of ion-exchange from N...
A systematic study has been performed to investigate the structural and magnetic changes in LiNi0.33...
New Li0.9Ni0.45Ti0.55O2 positive electrode materials were synthesized by means of ion exchange from ...
International audienceA series of LiNixMnyCozO2 (x=y, z=1−2y) oxides have been synthesized by “chimi...
We reported here on the synthesis, the crystal structure and the study of the structural changes dur...
Le nickelate de lithium "LiNiO2" est actuellement l'un des matériaux d'électrode positive pour batte...
Multiple substitution compounds with the formula LiNi0.8-yTiyCo0.2O2 (0 less than or equal to y less...
Layered ð1 aÞLiNi1yAlyO2 aLi½Li1=3Ni2=3O2 oxides, 0pao0:4, have been prepared by solid state react...
This thesis describes the in-depth characterisation of the structure, including detailed cation dist...
LiNiO2 is considered as a promising positive electrode material for lithium-ion batteries. A detaill...
LiNi1/2Mn1/2O2 electrodes with layered structure were synthesized by solid-state reaction between li...
International audienceThe layered LiNi0.5Mn0.5O2 was synthesized by wet-chemical method and characte...
peer reviewedAbstract LiCo2/3Ni1/6Mn1/6O2 layered oxide was synthesized by the combustion method tha...
International audienceThe layered oxide LiNi0.6Mn0.2Co0.2O2 is a very attractive positive electrode ...
The Li−Ni−O phase diagram contains a variety of compounds, most of which are electrochemically activ...
New layered cathode materials, Li₀.₉Ni₀.₄₅Ti₀.₅₅O₂, were synthesized by means of ion-exchange from N...
A systematic study has been performed to investigate the structural and magnetic changes in LiNi0.33...
New Li0.9Ni0.45Ti0.55O2 positive electrode materials were synthesized by means of ion exchange from ...
International audienceA series of LiNixMnyCozO2 (x=y, z=1−2y) oxides have been synthesized by “chimi...
We reported here on the synthesis, the crystal structure and the study of the structural changes dur...
Le nickelate de lithium "LiNiO2" est actuellement l'un des matériaux d'électrode positive pour batte...
Multiple substitution compounds with the formula LiNi0.8-yTiyCo0.2O2 (0 less than or equal to y less...
Layered ð1 aÞLiNi1yAlyO2 aLi½Li1=3Ni2=3O2 oxides, 0pao0:4, have been prepared by solid state react...
This thesis describes the in-depth characterisation of the structure, including detailed cation dist...
LiNiO2 is considered as a promising positive electrode material for lithium-ion batteries. A detaill...
LiNi1/2Mn1/2O2 electrodes with layered structure were synthesized by solid-state reaction between li...
International audienceThe layered LiNi0.5Mn0.5O2 was synthesized by wet-chemical method and characte...
peer reviewedAbstract LiCo2/3Ni1/6Mn1/6O2 layered oxide was synthesized by the combustion method tha...
International audienceThe layered oxide LiNi0.6Mn0.2Co0.2O2 is a very attractive positive electrode ...
The Li−Ni−O phase diagram contains a variety of compounds, most of which are electrochemically activ...
New layered cathode materials, Li₀.₉Ni₀.₄₅Ti₀.₅₅O₂, were synthesized by means of ion-exchange from N...
A systematic study has been performed to investigate the structural and magnetic changes in LiNi0.33...