Mechanism of the formation of novel Al2-xHfxO3 materials via a combustion synthesis method

In this paper, the synthesis mechanism of novel hafnium-doped alumina, Al2-xHfxO3 (x ​= ​0.001, 0.002 and 0.003) materials have been successfully formed via a self-propagating combustion (SPC) method. In-depth study of the materials through characterization by simultaneous thermogravimetric analysis...

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Main Authors: Mahat, Annie Maria, Kamarulzaman, Norlida, Mastuli, Mohd. Sufri, Badar, Nurhanna, Jani, Nur Aimi, Omar, Muhammad Firdaus
Format: Article
Published: Elsevier B.V. 2020
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Online Access:http://eprints.utm.my/id/eprint/91512/
http://dx.doi.org/10.1016/j.rinma.2020.100075
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spelling my.utm.915122021-06-30T12:17:29Z http://eprints.utm.my/id/eprint/91512/ Mechanism of the formation of novel Al2-xHfxO3 materials via a combustion synthesis method Mahat, Annie Maria Kamarulzaman, Norlida Mastuli, Mohd. Sufri Badar, Nurhanna Jani, Nur Aimi Omar, Muhammad Firdaus QC Physics In this paper, the synthesis mechanism of novel hafnium-doped alumina, Al2-xHfxO3 (x ​= ​0.001, 0.002 and 0.003) materials have been successfully formed via a self-propagating combustion (SPC) method. In-depth study of the materials through characterization by simultaneous thermogravimetric analysis (STA), X-ray diffraction (XRD), field emission scanning electron microscope (FESEM) and energy dispersive X-ray (EDX) were systematically done. STA technique were used to characterize the thermal profile of the precursors. From the analysis, the synthesis mechanism of the materials was proposed. XRD results reveal that hafnium doped materials correspond to the hexagonal crystal structure of Al2O3 that shows a success of the substitutional doping. The FESEM micrographs shown that the morphology of the materials was not significantly affected by the dopant concentrations. However, the presence of Hf4+ ions in Al2O3 were confirmed where the synthesized stoichiometry of all materials were perfectly identical to the obtained stoichiometry from EDX. Elsevier B.V. 2020-06 Article PeerReviewed Mahat, Annie Maria and Kamarulzaman, Norlida and Mastuli, Mohd. Sufri and Badar, Nurhanna and Jani, Nur Aimi and Omar, Muhammad Firdaus (2020) Mechanism of the formation of novel Al2-xHfxO3 materials via a combustion synthesis method. Results in Materials, 6 . p. 100075. ISSN 2590-048X http://dx.doi.org/10.1016/j.rinma.2020.100075
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic QC Physics
spellingShingle QC Physics
Mahat, Annie Maria
Kamarulzaman, Norlida
Mastuli, Mohd. Sufri
Badar, Nurhanna
Jani, Nur Aimi
Omar, Muhammad Firdaus
Mechanism of the formation of novel Al2-xHfxO3 materials via a combustion synthesis method
description In this paper, the synthesis mechanism of novel hafnium-doped alumina, Al2-xHfxO3 (x ​= ​0.001, 0.002 and 0.003) materials have been successfully formed via a self-propagating combustion (SPC) method. In-depth study of the materials through characterization by simultaneous thermogravimetric analysis (STA), X-ray diffraction (XRD), field emission scanning electron microscope (FESEM) and energy dispersive X-ray (EDX) were systematically done. STA technique were used to characterize the thermal profile of the precursors. From the analysis, the synthesis mechanism of the materials was proposed. XRD results reveal that hafnium doped materials correspond to the hexagonal crystal structure of Al2O3 that shows a success of the substitutional doping. The FESEM micrographs shown that the morphology of the materials was not significantly affected by the dopant concentrations. However, the presence of Hf4+ ions in Al2O3 were confirmed where the synthesized stoichiometry of all materials were perfectly identical to the obtained stoichiometry from EDX.
format Article
author Mahat, Annie Maria
Kamarulzaman, Norlida
Mastuli, Mohd. Sufri
Badar, Nurhanna
Jani, Nur Aimi
Omar, Muhammad Firdaus
author_facet Mahat, Annie Maria
Kamarulzaman, Norlida
Mastuli, Mohd. Sufri
Badar, Nurhanna
Jani, Nur Aimi
Omar, Muhammad Firdaus
author_sort Mahat, Annie Maria
title Mechanism of the formation of novel Al2-xHfxO3 materials via a combustion synthesis method
title_short Mechanism of the formation of novel Al2-xHfxO3 materials via a combustion synthesis method
title_full Mechanism of the formation of novel Al2-xHfxO3 materials via a combustion synthesis method
title_fullStr Mechanism of the formation of novel Al2-xHfxO3 materials via a combustion synthesis method
title_full_unstemmed Mechanism of the formation of novel Al2-xHfxO3 materials via a combustion synthesis method
title_sort mechanism of the formation of novel al2-xhfxo3 materials via a combustion synthesis method
publisher Elsevier B.V.
publishDate 2020
url http://eprints.utm.my/id/eprint/91512/
http://dx.doi.org/10.1016/j.rinma.2020.100075
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score 13.160551