We present a magnetic study of lithium ferrite nanoparticles of composition Li0.5Fe2.5O4, synthesized by a citrate gel decomposition method. The as prepared sample was composed of nearly spherical nanoparticles with an average particle size LT d GT (TEM)similar to 12 nm. Further annealing at 573 K and 673 K for 4 hours did not increase particle size noticeably, while annealing at 973 K led to morphology changes and significant increase in size ranging from 40 to above 200 nm. The magnetic properties of samples have been studied using Mossbauer specroscopy, and static magnetic measurements. The hyperfine parameters obtained from Mossbauer data at T = 10 K are in agreement to the bulk lithium ferrite phase. Annealed samples showed an evolutio...
Lithium ferrite powder was synthesized by a novel polyol method. The X-ray diffraction results indic...
Nanocrystalline LiFe5O8 particles embedded in an amorphous matrix were obtained by heat treatments o...
In this work, we present a structural, morphology and magnetic study of the Li0.5Fe2.5-xCrxO4 spinel...
Abstract: We present a magnetic study of lithium ferrite nanoparticles of composition Li0.5Fe2.5O4, ...
Lithium ferrite has been considered as one of the highly strategic magnetic material. Nano-crystalli...
Pure, crystalline, similar to 10 nm lithium ferrite phase (Li0.5Fe2.5O4), was Successfully synthesiz...
alpha-lithium ferrite (Li0.5Fe2.5O4) nanoparticles have been prepared using two synthesis routes: ci...
The structural and magnetic properties of lithium ferrite nanoparticles synthesized through the solu...
Pure, crystalline, ∼10 nm lithium ferrite phase (Li0.5Fe2.5O4), was successfully synthesized at very...
Fine particles of lithium ferrite were synthesized by the sol-gel method. By subsequent heat treatme...
Nanomaterials ferrites have applications in making permanent magnets, high density information devic...
Single phase nano-crystalline lithium cadmium ferrite Li0.35Cd0.3Fe2.35O4 is synthesized by a modifi...
Ferrites are ferrimagnetic ceramic materials with inherent useful electromagnetic properties. Of the...
Lithium ferrite Li0.5Fe2.5O4 has been synthesized by the use of the sol–gel technique. X-ray diffrac...
Nano size lithium ferrite was prepared through aerosol route and characterized using TEM, XRD, magne...
Lithium ferrite powder was synthesized by a novel polyol method. The X-ray diffraction results indic...
Nanocrystalline LiFe5O8 particles embedded in an amorphous matrix were obtained by heat treatments o...
In this work, we present a structural, morphology and magnetic study of the Li0.5Fe2.5-xCrxO4 spinel...
Abstract: We present a magnetic study of lithium ferrite nanoparticles of composition Li0.5Fe2.5O4, ...
Lithium ferrite has been considered as one of the highly strategic magnetic material. Nano-crystalli...
Pure, crystalline, similar to 10 nm lithium ferrite phase (Li0.5Fe2.5O4), was Successfully synthesiz...
alpha-lithium ferrite (Li0.5Fe2.5O4) nanoparticles have been prepared using two synthesis routes: ci...
The structural and magnetic properties of lithium ferrite nanoparticles synthesized through the solu...
Pure, crystalline, ∼10 nm lithium ferrite phase (Li0.5Fe2.5O4), was successfully synthesized at very...
Fine particles of lithium ferrite were synthesized by the sol-gel method. By subsequent heat treatme...
Nanomaterials ferrites have applications in making permanent magnets, high density information devic...
Single phase nano-crystalline lithium cadmium ferrite Li0.35Cd0.3Fe2.35O4 is synthesized by a modifi...
Ferrites are ferrimagnetic ceramic materials with inherent useful electromagnetic properties. Of the...
Lithium ferrite Li0.5Fe2.5O4 has been synthesized by the use of the sol–gel technique. X-ray diffrac...
Nano size lithium ferrite was prepared through aerosol route and characterized using TEM, XRD, magne...
Lithium ferrite powder was synthesized by a novel polyol method. The X-ray diffraction results indic...
Nanocrystalline LiFe5O8 particles embedded in an amorphous matrix were obtained by heat treatments o...
In this work, we present a structural, morphology and magnetic study of the Li0.5Fe2.5-xCrxO4 spinel...