The experimental determination of the magnetic ground state of triangular lattice anti-ferromagnet LiNiO2 is an intriguing problem as the system is prone to be Li deficient. We have been successful in preparing nearly stoichiometric LiNiO2 showing an anti-ferromagnetic ground state with an ordering temperature similar to 12 K. As the Li deficiency increases the sample exhibits spin glass behavior evidenced by a shift in the spin glass freezing temperature as a function of frequency in the ac susceptibility studies. As the Li deficiency crosses a critical limit, the sample becomes ferromagnetic in nature. We are able to tune the ferromagnetic transition temperature up to 240 K by varying the Li content. Finally, we have constructed a magneti...
In this work, results of X-band ESR spectroscopy, ac-magnetic susceptibility and X-ray powder diffra...
The non-stoichiometric system Li0.8Ni0.6Sb0.4O2 is a Li-deficient derivative of the zigzag honeycomb...
Postsynthesis thermal treatments at various temperatures in air have been applied to LiNiO2, and the...
Two-dimensional triangular-lattice antiferromagnetic systems continue to be an interesting area in c...
Abstract. In this work, results of X-band ESR spectroscopy, ac-magnetic susceptibility and X-ray pow...
5 pages, 5 figures, RevTexInternational audienceWe report on the ESR, magnetization and magnetic sus...
The magnetic susceptibility of LiNiO2 can be described by a high-temperature Curie-Weiss law that is...
AbstractRecently, the mixed transition metal oxides of the form Li (Ni1−y−zCoyMnz)O2, havebecome the...
We investigate the phase transformations of layered LiNi0.5Mn0.5O2 at finite temperature with a comb...
The nature of the magnetic state of LiNiO2 has been controversial. In this compound Ni spins (S = 1/...
In the Li1-xNaxNiO2 solid solutions three different single phase regions exist: for x > 0.9, forx = ...
We present a study of the magnetic properties of layered oxides that belong to the AMO2 family (A=Li...
From the 61Ni and 57Fe Mössbauer spectroscopy data follows the cationic site assignment in Li1–x Ni1...
International audienceWe show that the investigation of magnetic properties is the best tool to iden...
In LiNiO2, the Ni3+ ions, with S=1/2 and twofold orbital degeneracy, are arranged on a triangular la...
In this work, results of X-band ESR spectroscopy, ac-magnetic susceptibility and X-ray powder diffra...
The non-stoichiometric system Li0.8Ni0.6Sb0.4O2 is a Li-deficient derivative of the zigzag honeycomb...
Postsynthesis thermal treatments at various temperatures in air have been applied to LiNiO2, and the...
Two-dimensional triangular-lattice antiferromagnetic systems continue to be an interesting area in c...
Abstract. In this work, results of X-band ESR spectroscopy, ac-magnetic susceptibility and X-ray pow...
5 pages, 5 figures, RevTexInternational audienceWe report on the ESR, magnetization and magnetic sus...
The magnetic susceptibility of LiNiO2 can be described by a high-temperature Curie-Weiss law that is...
AbstractRecently, the mixed transition metal oxides of the form Li (Ni1−y−zCoyMnz)O2, havebecome the...
We investigate the phase transformations of layered LiNi0.5Mn0.5O2 at finite temperature with a comb...
The nature of the magnetic state of LiNiO2 has been controversial. In this compound Ni spins (S = 1/...
In the Li1-xNaxNiO2 solid solutions three different single phase regions exist: for x > 0.9, forx = ...
We present a study of the magnetic properties of layered oxides that belong to the AMO2 family (A=Li...
From the 61Ni and 57Fe Mössbauer spectroscopy data follows the cationic site assignment in Li1–x Ni1...
International audienceWe show that the investigation of magnetic properties is the best tool to iden...
In LiNiO2, the Ni3+ ions, with S=1/2 and twofold orbital degeneracy, are arranged on a triangular la...
In this work, results of X-band ESR spectroscopy, ac-magnetic susceptibility and X-ray powder diffra...
The non-stoichiometric system Li0.8Ni0.6Sb0.4O2 is a Li-deficient derivative of the zigzag honeycomb...
Postsynthesis thermal treatments at various temperatures in air have been applied to LiNiO2, and the...