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Investigation of the structural, optical, elastic and electrical properties of spinel LiZn(2)Fe(3)O(8) nanoparticles annealed at two distinct temperatures

Nanoparticles of Li(0.5)ZnFe(1.5)O(4) (LiZn(2)Fe(3)O(8)) with the spinel structure were prepared by a sol–gel auto-combustion method at two different annealing temperatures. X-ray diffractograms and Rietveld refinement confirmed the formation of the spinel structure. The morphology was analyzed by e...

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Autores principales: Bouokkeze, D., Massoudi, J., Hzez, W., Smari, M., Bougoffa, A., Khirouni, K., Dhahri, E., Bessais, L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9076384/
https://www.ncbi.nlm.nih.gov/pubmed/35540037
http://dx.doi.org/10.1039/c9ra07569k
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author Bouokkeze, D.
Massoudi, J.
Hzez, W.
Smari, M.
Bougoffa, A.
Khirouni, K.
Dhahri, E.
Bessais, L.
author_facet Bouokkeze, D.
Massoudi, J.
Hzez, W.
Smari, M.
Bougoffa, A.
Khirouni, K.
Dhahri, E.
Bessais, L.
author_sort Bouokkeze, D.
collection PubMed
description Nanoparticles of Li(0.5)ZnFe(1.5)O(4) (LiZn(2)Fe(3)O(8)) with the spinel structure were prepared by a sol–gel auto-combustion method at two different annealing temperatures. X-ray diffractograms and Rietveld refinement confirmed the formation of the spinel structure. The morphology was analyzed by electron microscopy, which showed that the grains were composed of different crystallites. Elastic properties were determined from infrared spectroscopy. It was found that the elastic parameters increased with the increase in annealing temperatures. The band gap depends on the annealing temperature and it decreased on increasing the particle size. The conductivity of the specimen annealed at 500 °C followed either the Jonscher's model or Drude's model depending on the temperature range. This conductivity decreased when the annealing temperature was raised by 600 °C. AC conductivity was found to be controlled by the hopping model. A single relaxation phenomenon was evidenced for each sample from impedance analysis. The Nyquist diagram proved that the samples were simultaneously capacitive and resistive and also supported the presence of multiple relaxation times.
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spelling pubmed-90763842022-05-09 Investigation of the structural, optical, elastic and electrical properties of spinel LiZn(2)Fe(3)O(8) nanoparticles annealed at two distinct temperatures Bouokkeze, D. Massoudi, J. Hzez, W. Smari, M. Bougoffa, A. Khirouni, K. Dhahri, E. Bessais, L. RSC Adv Chemistry Nanoparticles of Li(0.5)ZnFe(1.5)O(4) (LiZn(2)Fe(3)O(8)) with the spinel structure were prepared by a sol–gel auto-combustion method at two different annealing temperatures. X-ray diffractograms and Rietveld refinement confirmed the formation of the spinel structure. The morphology was analyzed by electron microscopy, which showed that the grains were composed of different crystallites. Elastic properties were determined from infrared spectroscopy. It was found that the elastic parameters increased with the increase in annealing temperatures. The band gap depends on the annealing temperature and it decreased on increasing the particle size. The conductivity of the specimen annealed at 500 °C followed either the Jonscher's model or Drude's model depending on the temperature range. This conductivity decreased when the annealing temperature was raised by 600 °C. AC conductivity was found to be controlled by the hopping model. A single relaxation phenomenon was evidenced for each sample from impedance analysis. The Nyquist diagram proved that the samples were simultaneously capacitive and resistive and also supported the presence of multiple relaxation times. The Royal Society of Chemistry 2019-12-11 /pmc/articles/PMC9076384/ /pubmed/35540037 http://dx.doi.org/10.1039/c9ra07569k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Bouokkeze, D.
Massoudi, J.
Hzez, W.
Smari, M.
Bougoffa, A.
Khirouni, K.
Dhahri, E.
Bessais, L.
Investigation of the structural, optical, elastic and electrical properties of spinel LiZn(2)Fe(3)O(8) nanoparticles annealed at two distinct temperatures
title Investigation of the structural, optical, elastic and electrical properties of spinel LiZn(2)Fe(3)O(8) nanoparticles annealed at two distinct temperatures
title_full Investigation of the structural, optical, elastic and electrical properties of spinel LiZn(2)Fe(3)O(8) nanoparticles annealed at two distinct temperatures
title_fullStr Investigation of the structural, optical, elastic and electrical properties of spinel LiZn(2)Fe(3)O(8) nanoparticles annealed at two distinct temperatures
title_full_unstemmed Investigation of the structural, optical, elastic and electrical properties of spinel LiZn(2)Fe(3)O(8) nanoparticles annealed at two distinct temperatures
title_short Investigation of the structural, optical, elastic and electrical properties of spinel LiZn(2)Fe(3)O(8) nanoparticles annealed at two distinct temperatures
title_sort investigation of the structural, optical, elastic and electrical properties of spinel lizn(2)fe(3)o(8) nanoparticles annealed at two distinct temperatures
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9076384/
https://www.ncbi.nlm.nih.gov/pubmed/35540037
http://dx.doi.org/10.1039/c9ra07569k
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