[Abstract] We measured susceptibility, electron-spin resonance, magnetization and electrical conductivity of LiCo1−yNiyO2 powders synthesized by wet-chemistry method using succinic acid as chelating agent. We found unusual properties in the nickel-rich LiCo0.2Ni0.8O2, which shows several resonance lines as a function of the temperature in the range 3.5–300 K. The signal at low magnetic field is attributed to the magnetic domains in the nanostructured sample. The two other lines correspond to the typical ferromagnetic signal observed in powdered compounds. In the temperature range 120–300 K, the unique ESR line centered at 315 mT is the paramagnetic signal with a gyromagnetic factor g=2.12, which is in good agreement with the presence of a h...
Nanocrystalline powders of LiCoO2 were synthesized using a modified solution combustion method, and ...
In this work, we studied the magnetic properties of LiNi0.33Mn0.33Co0.33O2 synthesized by wet chemis...
A new superstructure of layered pristine LiNiO2 (LNO) was obtained optimizing a large supercell of t...
[Abstract] Lithiated metal oxides LiCo1−yNiyO2 were synthesized by a sol–gel method using succinic a...
[Abstract] The layered LiCo1−yNiyO2 microcrystalline powders were synthesized by a sol–gel method us...
International audienceIn this work, we studied the local environment of a series of LiNiyMnyCo1-2yO2...
Single phase Ni substituted LiCo1-xNixO2 solid solutions with x <= 0.15 have been synthesized to stu...
Nickel-rich phases of the solid solutions, LiNi1-CoyO2 (y-/0.1, 0.2, 0.3), were synthesized by a sol...
The Li−Ni−O phase diagram contains a variety of compounds, most of which are electrochemically activ...
High temp. Lix0Co1-yNiyO2 (x0=1.0, 1.10; yr=0.0, 0.03, 0.06, and 0.10) phases were synthesized by so...
AbstractRecently, the mixed transition metal oxides of the form Li (Ni1−y−zCoyMnz)O2, havebecome the...
A systematic study has been performed to investigate the structural and magnetic changes in LiNi0.33...
The surface composition and chemical environment of LiCoO2, hexagonal LiNiO2, cubic LiNiO2, and the ...
Nickel−cobalt (Ni−Co) alloy powders were produced galvanostatically by using sulphate electrolytes w...
Following the demand for increased energy density of lithium-ion batteries, the Ni content of the Ni...
Nanocrystalline powders of LiCoO2 were synthesized using a modified solution combustion method, and ...
In this work, we studied the magnetic properties of LiNi0.33Mn0.33Co0.33O2 synthesized by wet chemis...
A new superstructure of layered pristine LiNiO2 (LNO) was obtained optimizing a large supercell of t...
[Abstract] Lithiated metal oxides LiCo1−yNiyO2 were synthesized by a sol–gel method using succinic a...
[Abstract] The layered LiCo1−yNiyO2 microcrystalline powders were synthesized by a sol–gel method us...
International audienceIn this work, we studied the local environment of a series of LiNiyMnyCo1-2yO2...
Single phase Ni substituted LiCo1-xNixO2 solid solutions with x <= 0.15 have been synthesized to stu...
Nickel-rich phases of the solid solutions, LiNi1-CoyO2 (y-/0.1, 0.2, 0.3), were synthesized by a sol...
The Li−Ni−O phase diagram contains a variety of compounds, most of which are electrochemically activ...
High temp. Lix0Co1-yNiyO2 (x0=1.0, 1.10; yr=0.0, 0.03, 0.06, and 0.10) phases were synthesized by so...
AbstractRecently, the mixed transition metal oxides of the form Li (Ni1−y−zCoyMnz)O2, havebecome the...
A systematic study has been performed to investigate the structural and magnetic changes in LiNi0.33...
The surface composition and chemical environment of LiCoO2, hexagonal LiNiO2, cubic LiNiO2, and the ...
Nickel−cobalt (Ni−Co) alloy powders were produced galvanostatically by using sulphate electrolytes w...
Following the demand for increased energy density of lithium-ion batteries, the Ni content of the Ni...
Nanocrystalline powders of LiCoO2 were synthesized using a modified solution combustion method, and ...
In this work, we studied the magnetic properties of LiNi0.33Mn0.33Co0.33O2 synthesized by wet chemis...
A new superstructure of layered pristine LiNiO2 (LNO) was obtained optimizing a large supercell of t...