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Formation and growth mechanism for niobium oxide nanoparticles: atomistic insight from in situ X-ray total scattering

Understanding the mechanisms for nanoparticle nucleation and growth is crucial for the development of tailormade nanomaterials. Here, we use X-ray total scattering and Pair Distribution Function analysis to follow the formation and growth of niobium oxide nanoparticles. We study the solvothermal syn...

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Autores principales: Aalling-Frederiksen, Olivia, Juelsholt, Mikkel, Anker, Andy S., Jensen, Kirsten M. Ø.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8101635/
https://www.ncbi.nlm.nih.gov/pubmed/33956920
http://dx.doi.org/10.1039/d0nr08299f
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author Aalling-Frederiksen, Olivia
Juelsholt, Mikkel
Anker, Andy S.
Jensen, Kirsten M. Ø.
author_facet Aalling-Frederiksen, Olivia
Juelsholt, Mikkel
Anker, Andy S.
Jensen, Kirsten M. Ø.
author_sort Aalling-Frederiksen, Olivia
collection PubMed
description Understanding the mechanisms for nanoparticle nucleation and growth is crucial for the development of tailormade nanomaterials. Here, we use X-ray total scattering and Pair Distribution Function analysis to follow the formation and growth of niobium oxide nanoparticles. We study the solvothermal synthesis from niobium chloride in benzyl alcohol, and through investigations of the influence of reaction temperature, a formation pathway can be suggested. Upon dissolution of niobium chloride in benzyl alcohol, octahedral [NbCl(6−x)O(x)] complexes form through exchange of chloride ligands. Heating of the solution results in polymerization, where larger clusters built from multiple edge-sharing [NbCl(6−x)O(x)] octahedra assemble. This leads to the formation of a nucleation cluster with the ReO(3) type structure, which grows to form nanoparticles of the Wadsley–Roth type H-Nb(2)O(5) structure, which in the bulk phase usually only forms at high temperature. Upon further growth, structural defects appear, and the presence of shear-planes in the structure appears highly dependent on nanoparticle size.
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spelling pubmed-81016352021-05-13 Formation and growth mechanism for niobium oxide nanoparticles: atomistic insight from in situ X-ray total scattering Aalling-Frederiksen, Olivia Juelsholt, Mikkel Anker, Andy S. Jensen, Kirsten M. Ø. Nanoscale Chemistry Understanding the mechanisms for nanoparticle nucleation and growth is crucial for the development of tailormade nanomaterials. Here, we use X-ray total scattering and Pair Distribution Function analysis to follow the formation and growth of niobium oxide nanoparticles. We study the solvothermal synthesis from niobium chloride in benzyl alcohol, and through investigations of the influence of reaction temperature, a formation pathway can be suggested. Upon dissolution of niobium chloride in benzyl alcohol, octahedral [NbCl(6−x)O(x)] complexes form through exchange of chloride ligands. Heating of the solution results in polymerization, where larger clusters built from multiple edge-sharing [NbCl(6−x)O(x)] octahedra assemble. This leads to the formation of a nucleation cluster with the ReO(3) type structure, which grows to form nanoparticles of the Wadsley–Roth type H-Nb(2)O(5) structure, which in the bulk phase usually only forms at high temperature. Upon further growth, structural defects appear, and the presence of shear-planes in the structure appears highly dependent on nanoparticle size. The Royal Society of Chemistry 2021-03-15 /pmc/articles/PMC8101635/ /pubmed/33956920 http://dx.doi.org/10.1039/d0nr08299f Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Aalling-Frederiksen, Olivia
Juelsholt, Mikkel
Anker, Andy S.
Jensen, Kirsten M. Ø.
Formation and growth mechanism for niobium oxide nanoparticles: atomistic insight from in situ X-ray total scattering
title Formation and growth mechanism for niobium oxide nanoparticles: atomistic insight from in situ X-ray total scattering
title_full Formation and growth mechanism for niobium oxide nanoparticles: atomistic insight from in situ X-ray total scattering
title_fullStr Formation and growth mechanism for niobium oxide nanoparticles: atomistic insight from in situ X-ray total scattering
title_full_unstemmed Formation and growth mechanism for niobium oxide nanoparticles: atomistic insight from in situ X-ray total scattering
title_short Formation and growth mechanism for niobium oxide nanoparticles: atomistic insight from in situ X-ray total scattering
title_sort formation and growth mechanism for niobium oxide nanoparticles: atomistic insight from in situ x-ray total scattering
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8101635/
https://www.ncbi.nlm.nih.gov/pubmed/33956920
http://dx.doi.org/10.1039/d0nr08299f
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