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Structural and magnetization crossover in electrodeposited FeAl(2)O(4) – effect of in situ oxidation

Amongst other spinels, iron aluminium oxide (FeAl(2)O(4)) exhibits exceptional chemical and physical properties. However, magnetic properties of FeAl(2)O(4) still need further investigation. DC electrodeposition is used to deposit intermetallic Fe(3)Al thin films. Oxidation time is varied from 0 to...

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Autores principales: Mukhtar, Fazeelat, Riaz, Saira, Awan, Attia, Rubab, Fatima, Kayani, Zohra N., Naseem, Shahzad
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/PMC9075829/
https://www.ncbi.nlm.nih.gov/pubmed/35541794
http://dx.doi.org/10.1039/c9ra04455h
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author Mukhtar, Fazeelat
Riaz, Saira
Awan, Attia
Rubab, Fatima
Kayani, Zohra N.
Naseem, Shahzad
author_facet Mukhtar, Fazeelat
Riaz, Saira
Awan, Attia
Rubab, Fatima
Kayani, Zohra N.
Naseem, Shahzad
author_sort Mukhtar, Fazeelat
collection PubMed
description Amongst other spinels, iron aluminium oxide (FeAl(2)O(4)) exhibits exceptional chemical and physical properties. However, magnetic properties of FeAl(2)O(4) still need further investigation. DC electrodeposition is used to deposit intermetallic Fe(3)Al thin films. Oxidation time is varied from 0 to 20 min with a constant metallic layer deposition time of 10 min. Electrodeposited iron aluminium oxide thin films are annealed in the presence of 500 Oe applied magnetic field (MF) at 300 °C in a vacuum. Mixed structural phases, i.e. FeAl(2)O(4) & χ-Al(2)O(3), are observed at 5 min, 10 min and 15 min oxidation time. Whereas phase pure FeAl(2)O(4) is observed at 20 min oxidation time. Magnetization loops show ferromagnetic behavior of iron aluminum oxide thin films with anisotropic nature for in-plane and out-plane configurations. The law of approach to saturation magnetization (LAS) is used to calculate magnetocrystalline anisotropy. Phase purity at 20 min oxidation time results in high saturation magnetization of 29.5 emu cm(−3) with a low value anistopy constant of 1.28 × 10(8) erg cm(−3). Easy axis of magnetization is shifted from perpendicular to parallel at an oxidation time of 20 min. Results show that in situ oxidation of thin films for 20 min leads to structural and magnetization crossover from impure to phase pure FeAl(2)O(4) thin films with a high value of magnetization.
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spelling pubmed-90758292022-05-09 Structural and magnetization crossover in electrodeposited FeAl(2)O(4) – effect of in situ oxidation Mukhtar, Fazeelat Riaz, Saira Awan, Attia Rubab, Fatima Kayani, Zohra N. Naseem, Shahzad RSC Adv Chemistry Amongst other spinels, iron aluminium oxide (FeAl(2)O(4)) exhibits exceptional chemical and physical properties. However, magnetic properties of FeAl(2)O(4) still need further investigation. DC electrodeposition is used to deposit intermetallic Fe(3)Al thin films. Oxidation time is varied from 0 to 20 min with a constant metallic layer deposition time of 10 min. Electrodeposited iron aluminium oxide thin films are annealed in the presence of 500 Oe applied magnetic field (MF) at 300 °C in a vacuum. Mixed structural phases, i.e. FeAl(2)O(4) & χ-Al(2)O(3), are observed at 5 min, 10 min and 15 min oxidation time. Whereas phase pure FeAl(2)O(4) is observed at 20 min oxidation time. Magnetization loops show ferromagnetic behavior of iron aluminum oxide thin films with anisotropic nature for in-plane and out-plane configurations. The law of approach to saturation magnetization (LAS) is used to calculate magnetocrystalline anisotropy. Phase purity at 20 min oxidation time results in high saturation magnetization of 29.5 emu cm(−3) with a low value anistopy constant of 1.28 × 10(8) erg cm(−3). Easy axis of magnetization is shifted from perpendicular to parallel at an oxidation time of 20 min. Results show that in situ oxidation of thin films for 20 min leads to structural and magnetization crossover from impure to phase pure FeAl(2)O(4) thin films with a high value of magnetization. The Royal Society of Chemistry 2019-11-25 /pmc/articles/PMC9075829/ /pubmed/35541794 http://dx.doi.org/10.1039/c9ra04455h Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Mukhtar, Fazeelat
Riaz, Saira
Awan, Attia
Rubab, Fatima
Kayani, Zohra N.
Naseem, Shahzad
Structural and magnetization crossover in electrodeposited FeAl(2)O(4) – effect of in situ oxidation
title Structural and magnetization crossover in electrodeposited FeAl(2)O(4) – effect of in situ oxidation
title_full Structural and magnetization crossover in electrodeposited FeAl(2)O(4) – effect of in situ oxidation
title_fullStr Structural and magnetization crossover in electrodeposited FeAl(2)O(4) – effect of in situ oxidation
title_full_unstemmed Structural and magnetization crossover in electrodeposited FeAl(2)O(4) – effect of in situ oxidation
title_short Structural and magnetization crossover in electrodeposited FeAl(2)O(4) – effect of in situ oxidation
title_sort structural and magnetization crossover in electrodeposited feal(2)o(4) – effect of in situ oxidation
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9075829/
https://www.ncbi.nlm.nih.gov/pubmed/35541794
http://dx.doi.org/10.1039/c9ra04455h
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