Structural and magnetic properties of yttrium iron garnet (YIG) and 4 yttrium aluminum iron garnet (YAlG) nanoferrite via sol-gel synthesis

The structural and magnetic properties of yttrium iron garnet (YIG) and yttrium aluminum iron garnet (Y3AlxFe5−xO12, YAIG) (x = 0.2, 0.6, 1, 1.4, 1.8, and 2.2) nanoparticles were investigated. The samples were prepared via auto combustion sol-gel technique, using citric acid as chelating agent and f...

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Main Authors: Musa, Makiyyu Abdullahi, Azis, Raba'ah Syahidah, Osman, Nurul Huda, Hassan, Jumiah, Zangina, Tasiu
Format: Article
Language:English
Published: Elsevier 2017
Online Access:http://psasir.upm.edu.my/id/eprint/63302/1/Structural%20and%20magnetic%20properties%20of%20yttrium%20iron%20garnet%20%28YIG%29%20and%20yttrium%20aluminum%20iron%20garnet%20%28YAlG%29%20nanoferrite%20via%20sol-gel%20synthesis.pdf
http://psasir.upm.edu.my/id/eprint/63302/
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spelling my.upm.eprints.633022018-10-15T03:01:46Z http://psasir.upm.edu.my/id/eprint/63302/ Structural and magnetic properties of yttrium iron garnet (YIG) and 4 yttrium aluminum iron garnet (YAlG) nanoferrite via sol-gel synthesis Musa, Makiyyu Abdullahi Azis, Raba'ah Syahidah Osman, Nurul Huda Hassan, Jumiah Zangina, Tasiu The structural and magnetic properties of yttrium iron garnet (YIG) and yttrium aluminum iron garnet (Y3AlxFe5−xO12, YAIG) (x = 0.2, 0.6, 1, 1.4, 1.8, and 2.2) nanoparticles were investigated. The samples were prepared via auto combustion sol-gel technique, using citric acid as chelating agent and fuel for the combustion process. The obtained powder was heated at 950 °C. X-ray diffraction peaks confirmed the garnet phase formation. Crystallite size increases with Al from 28.5894 to 28.6170 nm. Lattice constant of the samples was found to decrease from 12.4674 Å to 12.3233 Å as Al increase from 0.0 to 2.2. FTIR was used to confirm the garnet structure, the main vibrating modes were observed to shift to higher wave number with increasing Al concentration. Saturation magnetization, Ms shows a decreasing trend from 20.721 to 0.7586 emu/g with increasing Al from 0.0 to 2.2. Furthermore, the decreasing trends in the static magnetic properties of YAIG samples may be due to the introduction of Al ions in the YIG crystal lattice. High content of Al substitution on YIG leads to paramagnetic behavior of the ferrite. The grain size decreased from 0.64 μm to 0.32 μm, while the bulk density decreased from 5.058 gcm−3 to 4.233 gcm−3 as Al increase from 0.0 to 2.2. Elsevier 2017 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/63302/1/Structural%20and%20magnetic%20properties%20of%20yttrium%20iron%20garnet%20%28YIG%29%20and%20yttrium%20aluminum%20iron%20garnet%20%28YAlG%29%20nanoferrite%20via%20sol-gel%20synthesis.pdf Musa, Makiyyu Abdullahi and Azis, Raba'ah Syahidah and Osman, Nurul Huda and Hassan, Jumiah and Zangina, Tasiu (2017) Structural and magnetic properties of yttrium iron garnet (YIG) and 4 yttrium aluminum iron garnet (YAlG) nanoferrite via sol-gel synthesis. Results in Physics, 7. 1135 - 1142. ISSN 2211-3797 10.1016/j.rinp.2017.02.038
institution Universiti Putra Malaysia
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language English
description The structural and magnetic properties of yttrium iron garnet (YIG) and yttrium aluminum iron garnet (Y3AlxFe5−xO12, YAIG) (x = 0.2, 0.6, 1, 1.4, 1.8, and 2.2) nanoparticles were investigated. The samples were prepared via auto combustion sol-gel technique, using citric acid as chelating agent and fuel for the combustion process. The obtained powder was heated at 950 °C. X-ray diffraction peaks confirmed the garnet phase formation. Crystallite size increases with Al from 28.5894 to 28.6170 nm. Lattice constant of the samples was found to decrease from 12.4674 Å to 12.3233 Å as Al increase from 0.0 to 2.2. FTIR was used to confirm the garnet structure, the main vibrating modes were observed to shift to higher wave number with increasing Al concentration. Saturation magnetization, Ms shows a decreasing trend from 20.721 to 0.7586 emu/g with increasing Al from 0.0 to 2.2. Furthermore, the decreasing trends in the static magnetic properties of YAIG samples may be due to the introduction of Al ions in the YIG crystal lattice. High content of Al substitution on YIG leads to paramagnetic behavior of the ferrite. The grain size decreased from 0.64 μm to 0.32 μm, while the bulk density decreased from 5.058 gcm−3 to 4.233 gcm−3 as Al increase from 0.0 to 2.2.
format Article
author Musa, Makiyyu Abdullahi
Azis, Raba'ah Syahidah
Osman, Nurul Huda
Hassan, Jumiah
Zangina, Tasiu
spellingShingle Musa, Makiyyu Abdullahi
Azis, Raba'ah Syahidah
Osman, Nurul Huda
Hassan, Jumiah
Zangina, Tasiu
Structural and magnetic properties of yttrium iron garnet (YIG) and 4 yttrium aluminum iron garnet (YAlG) nanoferrite via sol-gel synthesis
author_facet Musa, Makiyyu Abdullahi
Azis, Raba'ah Syahidah
Osman, Nurul Huda
Hassan, Jumiah
Zangina, Tasiu
author_sort Musa, Makiyyu Abdullahi
title Structural and magnetic properties of yttrium iron garnet (YIG) and 4 yttrium aluminum iron garnet (YAlG) nanoferrite via sol-gel synthesis
title_short Structural and magnetic properties of yttrium iron garnet (YIG) and 4 yttrium aluminum iron garnet (YAlG) nanoferrite via sol-gel synthesis
title_full Structural and magnetic properties of yttrium iron garnet (YIG) and 4 yttrium aluminum iron garnet (YAlG) nanoferrite via sol-gel synthesis
title_fullStr Structural and magnetic properties of yttrium iron garnet (YIG) and 4 yttrium aluminum iron garnet (YAlG) nanoferrite via sol-gel synthesis
title_full_unstemmed Structural and magnetic properties of yttrium iron garnet (YIG) and 4 yttrium aluminum iron garnet (YAlG) nanoferrite via sol-gel synthesis
title_sort structural and magnetic properties of yttrium iron garnet (yig) and 4 yttrium aluminum iron garnet (yalg) nanoferrite via sol-gel synthesis
publisher Elsevier
publishDate 2017
url http://psasir.upm.edu.my/id/eprint/63302/1/Structural%20and%20magnetic%20properties%20of%20yttrium%20iron%20garnet%20%28YIG%29%20and%20yttrium%20aluminum%20iron%20garnet%20%28YAlG%29%20nanoferrite%20via%20sol-gel%20synthesis.pdf
http://psasir.upm.edu.my/id/eprint/63302/
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