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Part I: NiMoO(4) Nanostructures Synthesized by the Solution Combustion Method: A Parametric Study on the Influence of Synthesis Parameters on the Materials’ Physicochemical, Structural, and Morphological Properties

The impact of process conditions on the synthesis of NiMoO(4) nanostructures using a solution combustion synthesis (SCS) method, in which agar powder and Ni(NO(3))(2) were utilized as fuel and as the oxidant, respectively, was thoroughly studied. The results show that the calcination temperature had...

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Autores principales: Rammal, Mahmoud Bassam, Omanovic, Sasha
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8839866/
https://www.ncbi.nlm.nih.gov/pubmed/35164057
http://dx.doi.org/10.3390/molecules27030776
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author Rammal, Mahmoud Bassam
Omanovic, Sasha
author_facet Rammal, Mahmoud Bassam
Omanovic, Sasha
author_sort Rammal, Mahmoud Bassam
collection PubMed
description The impact of process conditions on the synthesis of NiMoO(4) nanostructures using a solution combustion synthesis (SCS) method, in which agar powder and Ni(NO(3))(2) were utilized as fuel and as the oxidant, respectively, was thoroughly studied. The results show that the calcination temperature had a significant implication on the specific surface area, phase composition, particle size, band gap, and crystallite size. The influence of calcination time on the resulting physicochemical/structural/morphological properties of NiMoO(4) nanostructures was found to be a major effect during the first 20 min, beyond which these properties varied to a lesser extent. The increase in the Ni/Mo atomic ratio in the oxide impacted the combustion dynamics of the system, which led to the formation of higher surface area materials, with the prevalence of the β-phase in Ni-rich samples. Likewise, the change in the pH of the precursor solution showed that the combustion reaction is more intense in the high-pH region, entailing major implications on the physicochemical properties and phase composition of the samples. The change in the fuel content showed that the presence of agar is important, as it endows the sample with a fluffy, porous texture and is also vital for the preponderance of the β-phase.
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spelling pubmed-88398662022-02-13 Part I: NiMoO(4) Nanostructures Synthesized by the Solution Combustion Method: A Parametric Study on the Influence of Synthesis Parameters on the Materials’ Physicochemical, Structural, and Morphological Properties Rammal, Mahmoud Bassam Omanovic, Sasha Molecules Article The impact of process conditions on the synthesis of NiMoO(4) nanostructures using a solution combustion synthesis (SCS) method, in which agar powder and Ni(NO(3))(2) were utilized as fuel and as the oxidant, respectively, was thoroughly studied. The results show that the calcination temperature had a significant implication on the specific surface area, phase composition, particle size, band gap, and crystallite size. The influence of calcination time on the resulting physicochemical/structural/morphological properties of NiMoO(4) nanostructures was found to be a major effect during the first 20 min, beyond which these properties varied to a lesser extent. The increase in the Ni/Mo atomic ratio in the oxide impacted the combustion dynamics of the system, which led to the formation of higher surface area materials, with the prevalence of the β-phase in Ni-rich samples. Likewise, the change in the pH of the precursor solution showed that the combustion reaction is more intense in the high-pH region, entailing major implications on the physicochemical properties and phase composition of the samples. The change in the fuel content showed that the presence of agar is important, as it endows the sample with a fluffy, porous texture and is also vital for the preponderance of the β-phase. MDPI 2022-01-25 /pmc/articles/PMC8839866/ /pubmed/35164057 http://dx.doi.org/10.3390/molecules27030776 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Rammal, Mahmoud Bassam
Omanovic, Sasha
Part I: NiMoO(4) Nanostructures Synthesized by the Solution Combustion Method: A Parametric Study on the Influence of Synthesis Parameters on the Materials’ Physicochemical, Structural, and Morphological Properties
title Part I: NiMoO(4) Nanostructures Synthesized by the Solution Combustion Method: A Parametric Study on the Influence of Synthesis Parameters on the Materials’ Physicochemical, Structural, and Morphological Properties
title_full Part I: NiMoO(4) Nanostructures Synthesized by the Solution Combustion Method: A Parametric Study on the Influence of Synthesis Parameters on the Materials’ Physicochemical, Structural, and Morphological Properties
title_fullStr Part I: NiMoO(4) Nanostructures Synthesized by the Solution Combustion Method: A Parametric Study on the Influence of Synthesis Parameters on the Materials’ Physicochemical, Structural, and Morphological Properties
title_full_unstemmed Part I: NiMoO(4) Nanostructures Synthesized by the Solution Combustion Method: A Parametric Study on the Influence of Synthesis Parameters on the Materials’ Physicochemical, Structural, and Morphological Properties
title_short Part I: NiMoO(4) Nanostructures Synthesized by the Solution Combustion Method: A Parametric Study on the Influence of Synthesis Parameters on the Materials’ Physicochemical, Structural, and Morphological Properties
title_sort part i: nimoo(4) nanostructures synthesized by the solution combustion method: a parametric study on the influence of synthesis parameters on the materials’ physicochemical, structural, and morphological properties
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8839866/
https://www.ncbi.nlm.nih.gov/pubmed/35164057
http://dx.doi.org/10.3390/molecules27030776
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