EFFECT OF ANNEALING TEMPERATURE ON THERMAL BEHAVIOUR AND CRYSTALLINITY OF ZINC OXIDE SUPPORTED MAGNESIUM ALUMINATE (ZnO/MgAl2O4) VIA GREEN SYNTHESIS ONE POT FUSION

Zinc oxide-supported magnesium aluminate (ZnO/MgAl2O4) 2 O 4 ) was synthesized by the one-pot fusion method, consuming magnesium nitrate, aluminum nitrate, and citric acid as starting precursors. The samples prepared were annealed at temperatures ranging from 700 to 900 degrees C to study the influe...

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Published in:ARCHIVES OF METALLURGY AND MATERIALS
Main Authors: Sukiman, N. S.; Zavawi, M. F.; Rahmat, N.; Abdullah, M. M. Al-Bakri
Format: Article
Language:English
Published: POLSKA AKAD NAUK, POLISH ACAD SCIENCES, INST METALL & MATER SCI PAS 2024
Subjects:
Online Access:https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001296371200028
author Sukiman
N. S.; Zavawi
M. F.; Rahmat
N.; Abdullah
M. M. Al-Bakri
spellingShingle Sukiman
N. S.; Zavawi
M. F.; Rahmat
N.; Abdullah
M. M. Al-Bakri
EFFECT OF ANNEALING TEMPERATURE ON THERMAL BEHAVIOUR AND CRYSTALLINITY OF ZINC OXIDE SUPPORTED MAGNESIUM ALUMINATE (ZnO/MgAl2O4) VIA GREEN SYNTHESIS ONE POT FUSION
Metallurgy & Metallurgical Engineering
author_facet Sukiman
N. S.; Zavawi
M. F.; Rahmat
N.; Abdullah
M. M. Al-Bakri
author_sort Sukiman
spelling Sukiman, N. S.; Zavawi, M. F.; Rahmat, N.; Abdullah, M. M. Al-Bakri
EFFECT OF ANNEALING TEMPERATURE ON THERMAL BEHAVIOUR AND CRYSTALLINITY OF ZINC OXIDE SUPPORTED MAGNESIUM ALUMINATE (ZnO/MgAl2O4) VIA GREEN SYNTHESIS ONE POT FUSION
ARCHIVES OF METALLURGY AND MATERIALS
English
Article
Zinc oxide-supported magnesium aluminate (ZnO/MgAl2O4) 2 O 4 ) was synthesized by the one-pot fusion method, consuming magnesium nitrate, aluminum nitrate, and citric acid as starting precursors. The samples prepared were annealed at temperatures ranging from 700 to 900 degrees C to study the influence of annealing temperature on thermal behaviour and crystalline properties. The thermal behaviour of ZnO/MgAl2O4 2 O 4 was characterized by thermogravimetric analysis (TGA), while the structural properties and crystalline phase of ZnO/MgAl2O4 2 O 4 were analysed by X-ray diffraction (XRD). The TGA results show that there were three stages of decomposition in the sample. The first stage indicates the removal of water content from the sample; the second stage indicates the decomposition of citric acid; and the third stage represents the crystallization phase formation at a temperature range of 800-950 degrees C. The percentage of citric acid decomposition increases with increasing annealing temperatures up to 800 degrees C. However, the decomposition rate gradually reduces at annealing temperatures between 850 and 900 degrees C. XRD analysis results suggest that microstructured ZnO/MgAl2O4 2 O 4 with high crystallinity can be obtained at the highest annealing temperature. It can be concluded that the result of thermal behaviour represented by the decomposition stage is corroborated with structural and crystalline properties at increasing annealing temperatures.
POLSKA AKAD NAUK, POLISH ACAD SCIENCES, INST METALL & MATER SCI PAS
1733-3490
2300-1909
2024
69
2
10.24425/amm.2024.149781
Metallurgy & Metallurgical Engineering
gold
WOS:001296371200028
https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001296371200028
title EFFECT OF ANNEALING TEMPERATURE ON THERMAL BEHAVIOUR AND CRYSTALLINITY OF ZINC OXIDE SUPPORTED MAGNESIUM ALUMINATE (ZnO/MgAl2O4) VIA GREEN SYNTHESIS ONE POT FUSION
title_short EFFECT OF ANNEALING TEMPERATURE ON THERMAL BEHAVIOUR AND CRYSTALLINITY OF ZINC OXIDE SUPPORTED MAGNESIUM ALUMINATE (ZnO/MgAl2O4) VIA GREEN SYNTHESIS ONE POT FUSION
title_full EFFECT OF ANNEALING TEMPERATURE ON THERMAL BEHAVIOUR AND CRYSTALLINITY OF ZINC OXIDE SUPPORTED MAGNESIUM ALUMINATE (ZnO/MgAl2O4) VIA GREEN SYNTHESIS ONE POT FUSION
title_fullStr EFFECT OF ANNEALING TEMPERATURE ON THERMAL BEHAVIOUR AND CRYSTALLINITY OF ZINC OXIDE SUPPORTED MAGNESIUM ALUMINATE (ZnO/MgAl2O4) VIA GREEN SYNTHESIS ONE POT FUSION
title_full_unstemmed EFFECT OF ANNEALING TEMPERATURE ON THERMAL BEHAVIOUR AND CRYSTALLINITY OF ZINC OXIDE SUPPORTED MAGNESIUM ALUMINATE (ZnO/MgAl2O4) VIA GREEN SYNTHESIS ONE POT FUSION
title_sort EFFECT OF ANNEALING TEMPERATURE ON THERMAL BEHAVIOUR AND CRYSTALLINITY OF ZINC OXIDE SUPPORTED MAGNESIUM ALUMINATE (ZnO/MgAl2O4) VIA GREEN SYNTHESIS ONE POT FUSION
container_title ARCHIVES OF METALLURGY AND MATERIALS
language English
format Article
description Zinc oxide-supported magnesium aluminate (ZnO/MgAl2O4) 2 O 4 ) was synthesized by the one-pot fusion method, consuming magnesium nitrate, aluminum nitrate, and citric acid as starting precursors. The samples prepared were annealed at temperatures ranging from 700 to 900 degrees C to study the influence of annealing temperature on thermal behaviour and crystalline properties. The thermal behaviour of ZnO/MgAl2O4 2 O 4 was characterized by thermogravimetric analysis (TGA), while the structural properties and crystalline phase of ZnO/MgAl2O4 2 O 4 were analysed by X-ray diffraction (XRD). The TGA results show that there were three stages of decomposition in the sample. The first stage indicates the removal of water content from the sample; the second stage indicates the decomposition of citric acid; and the third stage represents the crystallization phase formation at a temperature range of 800-950 degrees C. The percentage of citric acid decomposition increases with increasing annealing temperatures up to 800 degrees C. However, the decomposition rate gradually reduces at annealing temperatures between 850 and 900 degrees C. XRD analysis results suggest that microstructured ZnO/MgAl2O4 2 O 4 with high crystallinity can be obtained at the highest annealing temperature. It can be concluded that the result of thermal behaviour represented by the decomposition stage is corroborated with structural and crystalline properties at increasing annealing temperatures.
publisher POLSKA AKAD NAUK, POLISH ACAD SCIENCES, INST METALL & MATER SCI PAS
issn 1733-3490
2300-1909
publishDate 2024
container_volume 69
container_issue 2
doi_str_mv 10.24425/amm.2024.149781
topic Metallurgy & Metallurgical Engineering
topic_facet Metallurgy & Metallurgical Engineering
accesstype gold
id WOS:001296371200028
url https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001296371200028
record_format wos
collection Web of Science (WoS)
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