Magnetic and dielectric characteristics of Nd and Nd-Mg substituted strontium hexaferrite

A systematic investigation on the phase formation, magnetic, dielectric and impedance properties of strontium hexaferrites doped with Nd and Nd-Mg was performed. All ferrite samples were prepared by the citrate-precursor method and characterized with a combination of X-ray diffract...

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Main Authors: Basharat Want, Bilal Hamid Bhat
Format: Article
Language:English
Published: Pensoft Publishers 2018-05-01
Series:Modern Electronic Materials
Online Access:https://moem.pensoft.net/article/33273/download/pdf/
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spelling doaj-281f334d226d4196b4155392ecdd19c12021-04-02T14:48:25ZengPensoft PublishersModern Electronic Materials2452-17792018-05-0141212910.3897/j.moem.4.1.3327333273Magnetic and dielectric characteristics of Nd and Nd-Mg substituted strontium hexaferriteBasharat Want0Bilal Hamid Bhat1University of KashmirSolid State Research Lab., Department of Physics, University of Kashmir A systematic investigation on the phase formation, magnetic, dielectric and impedance properties of strontium hexaferrites doped with Nd and Nd-Mg was performed. All ferrite samples were prepared by the citrate-precursor method and characterized with a combination of X-ray diffraction, Vibrating sample magnetometer and impedance analyser. XRD analysis confirms the magnetoplumbite structure with space group p63/mmc without any secondary phase. The lattice parameter ratio c/a lies in the range of 3.92 to 3.94 and shows that the prepared material exhibits M-type hexagonal structure. An increase in coercivity and a decrease in magnetization were observed for all the samples. Large value of coercivity suggests that these materials are useful in longitudinal recording media. Further, it was found that the value of magnetocrystalline anisotropy constant K1 decreases with the substitution of Nd and Nd-Mg. Measurement of dielectric loss and dielectric constant were performed as a function of temperature and frequency. Dielectric constant and ac conductivity of Sr0.95Nd0.05Mg0.05Fe11.95O19 is more as compared to Sr0.95Nd0.05Fe12O19 and SrFe12O19 for all frequencies. The value of grain boundary resistance (Rgb) of Sr0.95Nd0.05Fe12O19 is less as compared to SrFe12O19 and Sr0.95Nd0.05Mg0.05Fe11.95O19 and vice versa trend is observed in the value of capacitance of the grain boundary (Cgb) and in the values of relaxation time (τgb). https://moem.pensoft.net/article/33273/download/pdf/
collection DOAJ
language English
format Article
sources DOAJ
author Basharat Want
Bilal Hamid Bhat
spellingShingle Basharat Want
Bilal Hamid Bhat
Magnetic and dielectric characteristics of Nd and Nd-Mg substituted strontium hexaferrite
Modern Electronic Materials
author_facet Basharat Want
Bilal Hamid Bhat
author_sort Basharat Want
title Magnetic and dielectric characteristics of Nd and Nd-Mg substituted strontium hexaferrite
title_short Magnetic and dielectric characteristics of Nd and Nd-Mg substituted strontium hexaferrite
title_full Magnetic and dielectric characteristics of Nd and Nd-Mg substituted strontium hexaferrite
title_fullStr Magnetic and dielectric characteristics of Nd and Nd-Mg substituted strontium hexaferrite
title_full_unstemmed Magnetic and dielectric characteristics of Nd and Nd-Mg substituted strontium hexaferrite
title_sort magnetic and dielectric characteristics of nd and nd-mg substituted strontium hexaferrite
publisher Pensoft Publishers
series Modern Electronic Materials
issn 2452-1779
publishDate 2018-05-01
description A systematic investigation on the phase formation, magnetic, dielectric and impedance properties of strontium hexaferrites doped with Nd and Nd-Mg was performed. All ferrite samples were prepared by the citrate-precursor method and characterized with a combination of X-ray diffraction, Vibrating sample magnetometer and impedance analyser. XRD analysis confirms the magnetoplumbite structure with space group p63/mmc without any secondary phase. The lattice parameter ratio c/a lies in the range of 3.92 to 3.94 and shows that the prepared material exhibits M-type hexagonal structure. An increase in coercivity and a decrease in magnetization were observed for all the samples. Large value of coercivity suggests that these materials are useful in longitudinal recording media. Further, it was found that the value of magnetocrystalline anisotropy constant K1 decreases with the substitution of Nd and Nd-Mg. Measurement of dielectric loss and dielectric constant were performed as a function of temperature and frequency. Dielectric constant and ac conductivity of Sr0.95Nd0.05Mg0.05Fe11.95O19 is more as compared to Sr0.95Nd0.05Fe12O19 and SrFe12O19 for all frequencies. The value of grain boundary resistance (Rgb) of Sr0.95Nd0.05Fe12O19 is less as compared to SrFe12O19 and Sr0.95Nd0.05Mg0.05Fe11.95O19 and vice versa trend is observed in the value of capacitance of the grain boundary (Cgb) and in the values of relaxation time (τgb).
url https://moem.pensoft.net/article/33273/download/pdf/
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