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Synthesis, structural, magnetic and optical studies of Eu doped Ni–Zn nano ferrites.

Authors :
Sandeep, A.
Ganesh, G.
Swathi, S.
Rajesh, N.
Sreelatha, M.
Prasanna Kumari, K.N.
Brahmanandam, B.
Rapaka, S. Chandra Bose
Ravinder, D.
Shanker, J.
Naini, Pavan Kumar
Source :
Ceramics International. Oct2022:Part B, Vol. 48 Issue 19, p29493-29501. 9p.
Publication Year :
2022

Abstract

Ni–Zn ferrites exhibit properties like high resistivity, high Curie temperature, and low relative loss. In this paper, the impact of the small doping of Europium on structural, magnetic and optical properties of Ni–Zn ferrites has been investigated. The samples were prepared through the Sol-Gel method and grounded powders were calcined at 500 °C for 4hrs. Cubic crystalline structure with Fd-3m space group was confirmed for all ferrites by XRD and Ritveld refinement. Surface morphology of the samples was revealed by SEM. The cation distribution and crystal deformation were observed from Raman spectra with increasing Eu3+ ions content. The band gap energy values were calculated from UV–Visible spectra which are in the order of 1.6 eV and these values were directly proportional to the lattice constant. Room temperature magnetic properties were studied and the variation in the properties with the doping was discussed. From magnetic properties of Eu doped Ni–Zn ferrites it was found that these are suitable for core material in transformers and in power transmission. XRD patterns of the Eu doped Ni–Zn Ferrites. [Display omitted] • Nanoparticles of Eu doped Ni–Zn Ferrites were prepared at low temperatures. • (500 °C) through Sol-Gel method. • Band gap energy of 1.6 eV has been obtained in these samples and those are used as a semiconducting material. • FTIR data confirmed the cubic spinel structure of the materials of the present investigation. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
02728842
Volume :
48
Issue :
19
Database :
Academic Search Index
Journal :
Ceramics International
Publication Type :
Academic Journal
Accession number :
158608731
Full Text :
https://doi.org/10.1016/j.ceramint.2022.07.071