Structural and dielectric studies of Mg2+ substituted Ni–Zn ferrite

Polycrystalline ferrites having the chemical formula Ni0.65−xZn0.35MgxFe2O4 (0 ⩽ x ⩽ 0.2) were prepared by solid state reaction route in steps of x = 0.04. The effect of incorporation of diamagnetic divalent magnesium at expense of nickel on the structural properties of these ferrites has been studi...

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Main Authors: Vara Prasad B.B.V.S., Rajesh Babu B., Siva Ram Prasad M.
Format: Article
Language:English
Published: Sciendo 2015-12-01
Series:Materials Science-Poland
Subjects:
Online Access:https://doi.org/10.1515/msp-2015-0111
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spelling doaj-4e4b2a8d55944f85a80d12fc7fa428322021-07-01T19:28:38ZengSciendoMaterials Science-Poland2083-134X2015-12-0133480681510.1515/msp-2015-0111msp-2015-0111Structural and dielectric studies of Mg2+ substituted Ni–Zn ferriteVara Prasad B.B.V.S.0Rajesh Babu B.1Siva Ram Prasad M.2Department of Physics, MVGR College of Engineering, Chintalavalasa, Vizianagaram, Andhra Pradesh, India-535 005Department of Science & Humanities, GVP College of Engineering (W), Madhurawada, Visakhapatnam, Andhra Pradesh, India-530 048Department of Physics, MVGR College of Engineering, Chintalavalasa, Vizianagaram, Andhra Pradesh, India-535 005Polycrystalline ferrites having the chemical formula Ni0.65−xZn0.35MgxFe2O4 (0 ⩽ x ⩽ 0.2) were prepared by solid state reaction route in steps of x = 0.04. The effect of incorporation of diamagnetic divalent magnesium at expense of nickel on the structural properties of these ferrites has been studied. The proposed cation distribution was derived from theoretical X-ray diffraction intensity calculations. These intensity calculations were done by varying the concentration of magnesium ions over two sites in the lattice. For a certain amount of magnesium concentration, the calculated and observed X-ray diffraction intensities were found to be in good agreement. Site occupancy of divalent diamagnetic magnesium was established from this cation distribution. The octahedral environment facilitates magnesium to enter the B-site at about 95 % and the remaining 5 % occupy tetrahedral sites (A-sites). The movements of cations between tetrahedral and octahedral sites as a result of magnesium substitution were discussed in the view of structural parameters, such as tetrahedral and octahedral bond lengths, cation-cation and cation-anion distances, bond angles and hopping lengths, which were calculated using experimental lattice constants and oxygen parameters. All structural parameters showed slight deviations from ideal values. Among all magnesium substituted samples, the ones with x = 0.12 exhibited insignificant variation in view of structural properties. Dielectric measurements were conducted at a standard frequency of 1 kHz. Large values of the recorded dielectric constants displayed typical characteristics of bulk ferrites. Both dielectric constant and loss values showed mixed variations, attributed to the loss of zinc ions during the sintering process.https://doi.org/10.1515/msp-2015-0111ferritemagnesiumx-ray diffractionstructurecation distribution
collection DOAJ
language English
format Article
sources DOAJ
author Vara Prasad B.B.V.S.
Rajesh Babu B.
Siva Ram Prasad M.
spellingShingle Vara Prasad B.B.V.S.
Rajesh Babu B.
Siva Ram Prasad M.
Structural and dielectric studies of Mg2+ substituted Ni–Zn ferrite
Materials Science-Poland
ferrite
magnesium
x-ray diffraction
structure
cation distribution
author_facet Vara Prasad B.B.V.S.
Rajesh Babu B.
Siva Ram Prasad M.
author_sort Vara Prasad B.B.V.S.
title Structural and dielectric studies of Mg2+ substituted Ni–Zn ferrite
title_short Structural and dielectric studies of Mg2+ substituted Ni–Zn ferrite
title_full Structural and dielectric studies of Mg2+ substituted Ni–Zn ferrite
title_fullStr Structural and dielectric studies of Mg2+ substituted Ni–Zn ferrite
title_full_unstemmed Structural and dielectric studies of Mg2+ substituted Ni–Zn ferrite
title_sort structural and dielectric studies of mg2+ substituted ni–zn ferrite
publisher Sciendo
series Materials Science-Poland
issn 2083-134X
publishDate 2015-12-01
description Polycrystalline ferrites having the chemical formula Ni0.65−xZn0.35MgxFe2O4 (0 ⩽ x ⩽ 0.2) were prepared by solid state reaction route in steps of x = 0.04. The effect of incorporation of diamagnetic divalent magnesium at expense of nickel on the structural properties of these ferrites has been studied. The proposed cation distribution was derived from theoretical X-ray diffraction intensity calculations. These intensity calculations were done by varying the concentration of magnesium ions over two sites in the lattice. For a certain amount of magnesium concentration, the calculated and observed X-ray diffraction intensities were found to be in good agreement. Site occupancy of divalent diamagnetic magnesium was established from this cation distribution. The octahedral environment facilitates magnesium to enter the B-site at about 95 % and the remaining 5 % occupy tetrahedral sites (A-sites). The movements of cations between tetrahedral and octahedral sites as a result of magnesium substitution were discussed in the view of structural parameters, such as tetrahedral and octahedral bond lengths, cation-cation and cation-anion distances, bond angles and hopping lengths, which were calculated using experimental lattice constants and oxygen parameters. All structural parameters showed slight deviations from ideal values. Among all magnesium substituted samples, the ones with x = 0.12 exhibited insignificant variation in view of structural properties. Dielectric measurements were conducted at a standard frequency of 1 kHz. Large values of the recorded dielectric constants displayed typical characteristics of bulk ferrites. Both dielectric constant and loss values showed mixed variations, attributed to the loss of zinc ions during the sintering process.
topic ferrite
magnesium
x-ray diffraction
structure
cation distribution
url https://doi.org/10.1515/msp-2015-0111
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