Study structural, surface morphological and magnetic properties of Mn(1-x) Znx Fe2O4 by solid state reaction method

The powder of Mn-Zn ferrite having the chemical formula Mn(1-x)ZnxFe2O4 where x varies from 0, 0.1, 0.2, 0.3, 0.4, and 0.5 were synthesized by solid state Reaction method. The X-Ray Diffraction studies confirm the formation of spinel cubic structure. The particle size was calculated by X-ray broade...

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Main Authors: Abdulsamee Fawzi AbdulAziz, Kalf Abraheem Kalaiel, Maamar Abdul Aziz Kamil
Format: Article
Language:English
Published: Tikrit University 2023-02-01
Series:Tikrit Journal of Pure Science
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Online Access:https://tjpsj.org/index.php/tjps/article/view/1007
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author Abdulsamee Fawzi AbdulAziz
Kalf Abraheem Kalaiel
Maamar Abdul Aziz Kamil
author_facet Abdulsamee Fawzi AbdulAziz
Kalf Abraheem Kalaiel
Maamar Abdul Aziz Kamil
author_sort Abdulsamee Fawzi AbdulAziz
collection DOAJ
description The powder of Mn-Zn ferrite having the chemical formula Mn(1-x)ZnxFe2O4 where x varies from 0, 0.1, 0.2, 0.3, 0.4, and 0.5 were synthesized by solid state Reaction method. The X-Ray Diffraction studies confirm the formation of spinel cubic structure. The particle size was calculated by X-ray broadening studies. Also the structural parameters like Lattice Constant, X-ray density, bulk density (d), Porosity (P), ionic radius (Ra , Rb) and anion parameter or the oxygen positional parameter  for all the samples. The micro structural features of the samples were obtained using a Scanning Electron Microscopy (SEM). The magnetic properties of Mn(1-x)ZnxFe2O4 ferrites were strongly affected by the Zn content. The saturation magnetization increased. It may be due to relatively high orbital contribution of Mn2+ ions to magnetic moment, which gives large induced anisotropy.
format Article
id doaj-art-e5108a86ad054e33bfaa91bb3b6b6835
institution Kabale University
issn 1813-1662
2415-1726
language English
publishDate 2023-02-01
publisher Tikrit University
record_format Article
series Tikrit Journal of Pure Science
spelling doaj-art-e5108a86ad054e33bfaa91bb3b6b68352025-08-20T03:28:59ZengTikrit UniversityTikrit Journal of Pure Science1813-16622415-17262023-02-0121310.25130/tjps.v21i3.1007Study structural, surface morphological and magnetic properties of Mn(1-x) Znx Fe2O4 by solid state reaction methodAbdulsamee Fawzi AbdulAzizKalf Abraheem KalaielMaamar Abdul Aziz Kamil The powder of Mn-Zn ferrite having the chemical formula Mn(1-x)ZnxFe2O4 where x varies from 0, 0.1, 0.2, 0.3, 0.4, and 0.5 were synthesized by solid state Reaction method. The X-Ray Diffraction studies confirm the formation of spinel cubic structure. The particle size was calculated by X-ray broadening studies. Also the structural parameters like Lattice Constant, X-ray density, bulk density (d), Porosity (P), ionic radius (Ra , Rb) and anion parameter or the oxygen positional parameter  for all the samples. The micro structural features of the samples were obtained using a Scanning Electron Microscopy (SEM). The magnetic properties of Mn(1-x)ZnxFe2O4 ferrites were strongly affected by the Zn content. The saturation magnetization increased. It may be due to relatively high orbital contribution of Mn2+ ions to magnetic moment, which gives large induced anisotropy. https://tjpsj.org/index.php/tjps/article/view/1007Mn-Zn ferritesX-ray diffractionmagnetic properties
spellingShingle Abdulsamee Fawzi AbdulAziz
Kalf Abraheem Kalaiel
Maamar Abdul Aziz Kamil
Study structural, surface morphological and magnetic properties of Mn(1-x) Znx Fe2O4 by solid state reaction method
Tikrit Journal of Pure Science
Mn-Zn ferrites
X-ray diffraction
magnetic properties
title Study structural, surface morphological and magnetic properties of Mn(1-x) Znx Fe2O4 by solid state reaction method
title_full Study structural, surface morphological and magnetic properties of Mn(1-x) Znx Fe2O4 by solid state reaction method
title_fullStr Study structural, surface morphological and magnetic properties of Mn(1-x) Znx Fe2O4 by solid state reaction method
title_full_unstemmed Study structural, surface morphological and magnetic properties of Mn(1-x) Znx Fe2O4 by solid state reaction method
title_short Study structural, surface morphological and magnetic properties of Mn(1-x) Znx Fe2O4 by solid state reaction method
title_sort study structural surface morphological and magnetic properties of mn 1 x znx fe2o4 by solid state reaction method
topic Mn-Zn ferrites
X-ray diffraction
magnetic properties
url https://tjpsj.org/index.php/tjps/article/view/1007
work_keys_str_mv AT abdulsameefawziabdulaziz studystructuralsurfacemorphologicalandmagneticpropertiesofmn1xznxfe2o4bysolidstatereactionmethod
AT kalfabraheemkalaiel studystructuralsurfacemorphologicalandmagneticpropertiesofmn1xznxfe2o4bysolidstatereactionmethod
AT maamarabdulazizkamil studystructuralsurfacemorphologicalandmagneticpropertiesofmn1xznxfe2o4bysolidstatereactionmethod