The effect on dielectric losses in lithium ferrite by cerium substitution

An extensive study of magnetic and dielectric properties has been carried out on the series of cerium substituted lithium ferrite Li 0.5Ce x Fe 2.5− x O 4 ( x = 0.0–0.10 in step of 0.02) prepared by solid-state reaction technique. Phase analysis, microstructure and magnetic properties were studied b...

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Published inJournal of alloys and compounds Vol. 466; no. 1; pp. 404 - 407
Main Authors Verma, Vivek, Kotnala, R.K., Pandey, Vibhav, Kothari, P.C., Radhapiyari, L., Matheru, B.S.
Format Journal Article
LanguageEnglish
Published Lausanne Elsevier B.V 20.10.2008
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Abstract An extensive study of magnetic and dielectric properties has been carried out on the series of cerium substituted lithium ferrite Li 0.5Ce x Fe 2.5− x O 4 ( x = 0.0–0.10 in step of 0.02) prepared by solid-state reaction technique. Phase analysis, microstructure and magnetic properties were studied by X-ray diffraction, scanning electron microscopy and vibrating sample magnetometer (VSM), respectively. Saturation magnetization value ( M s) decreases with substitution of cerium in lithium ferrite but the real part of dielectric constant value 3.4 × 10 4 obtained is maximum for the molar concentration Ce = 0.06 in Li 0.5Ce x Fe 2.5− x O 4. Resistivity of all samples is in the range 10 6–10 7 Ω cm measured by two-probe technique.
AbstractList An extensive study of magnetic and dielectric properties has been carried out on the series of cerium substituted lithium ferrite Li 0.5Ce x Fe 2.5− x O 4 ( x = 0.0–0.10 in step of 0.02) prepared by solid-state reaction technique. Phase analysis, microstructure and magnetic properties were studied by X-ray diffraction, scanning electron microscopy and vibrating sample magnetometer (VSM), respectively. Saturation magnetization value ( M s) decreases with substitution of cerium in lithium ferrite but the real part of dielectric constant value 3.4 × 10 4 obtained is maximum for the molar concentration Ce = 0.06 in Li 0.5Ce x Fe 2.5− x O 4. Resistivity of all samples is in the range 10 6–10 7 Ω cm measured by two-probe technique.
An extensive study of magnetic and dielectric properties has been carried out on the series of cerium substituted lithium ferrite Li0.5CexFe2.5-xO4 (x = 0.0-0.10 in step of 0.02) prepared by solid-state reaction technique. Phase analysis, microstructure and magnetic properties were studied by X-ray diffraction, scanning electron microscopy and vibrating sample magnetometer (VSM), respectively. Saturation magnetization value (Ms) decreases with substitution of cerium in lithium ferrite but the real part of dielectric constant value 3.4 X 104 obtained is maximum for the molar concentration Ce = 0.06 in Li0.5CexFe2.5-xO4. Resistivity of all samples is in the range 106-107 Omega cm measured by two-probe technique.
Author Radhapiyari, L.
Verma, Vivek
Kotnala, R.K.
Kothari, P.C.
Pandey, Vibhav
Matheru, B.S.
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  organization: Solid State Physics Laboratory, Lucknow Road, New Delhi 110054, India
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Issue 1
Keywords X-ray diffraction
Magnetization
Microstructure
Solid state reaction
Scanning electron microscopy
Electrical conductivity
Dielectric properties
XRD
Phase analysis
Cerium Iron Lithium Oxides Mixed
Ferrites
Dielectric losses
Permittivity
Saturation magnetization
Magnetic properties
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Snippet An extensive study of magnetic and dielectric properties has been carried out on the series of cerium substituted lithium ferrite Li 0.5Ce x Fe 2.5− x O 4 ( x...
An extensive study of magnetic and dielectric properties has been carried out on the series of cerium substituted lithium ferrite Li0.5CexFe2.5-xO4 (x =...
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SubjectTerms Condensed matter: electronic structure, electrical, magnetic, and optical properties
Dielectric loss and relaxation
Dielectric properties of solids and liquids
Dielectrics, piezoelectrics, and ferroelectrics and their properties
Exact sciences and technology
Magnetization
Microstructure
Permittivity (dielectric function)
Physics
Solid state reaction
X-ray diffraction
Title The effect on dielectric losses in lithium ferrite by cerium substitution
URI https://dx.doi.org/10.1016/j.jallcom.2007.11.056
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