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Defect structure in δ-Bi(5)PbY(2)O(11.5)

A detailed study of the defect structure in a di-substituted δ-Bi(2)O(3) type phase, δ-Bi(5)PbY(2)O(11.5), is presented. Using a combination of conventional Rietveld analysis of neutron diffraction data, reverse Monte Carlo (RMC) analysis of total neutron scattering data and ab initio molecular dyna...

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Autores principales: Borowska-Centkowska, Anna, Liu, Xi, Krynski, Marcin, Leszczynska, Marzena, Wrobel, Wojciech, Malys, Marcin, Hull, Stephen, Norberg, Stefan T., Krok, Franciszek, Abrahams, Isaac
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9062157/
https://www.ncbi.nlm.nih.gov/pubmed/35520691
http://dx.doi.org/10.1039/c9ra01233h
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author Borowska-Centkowska, Anna
Liu, Xi
Krynski, Marcin
Leszczynska, Marzena
Wrobel, Wojciech
Malys, Marcin
Hull, Stephen
Norberg, Stefan T.
Krok, Franciszek
Abrahams, Isaac
author_facet Borowska-Centkowska, Anna
Liu, Xi
Krynski, Marcin
Leszczynska, Marzena
Wrobel, Wojciech
Malys, Marcin
Hull, Stephen
Norberg, Stefan T.
Krok, Franciszek
Abrahams, Isaac
author_sort Borowska-Centkowska, Anna
collection PubMed
description A detailed study of the defect structure in a di-substituted δ-Bi(2)O(3) type phase, δ-Bi(5)PbY(2)O(11.5), is presented. Using a combination of conventional Rietveld analysis of neutron diffraction data, reverse Monte Carlo (RMC) analysis of total neutron scattering data and ab initio molecular dynamics (MD) simulations, both average and local structures have been characterized. δ-Bi(5)PbY(2)O(11.5) represents a model system for the highly conducting δ-Bi(2)O(3) type phases, in which there is a higher nominal vacancy concentration than in the unsubstituted parent compound. Uniquely, the methodology developed in this study has afforded the opportunity to study both oxide-ion vacancy ordering as well as specific cation–cation interactions. Oxide-ion vacancies in this system have been found to show a preference for association with Pb(2+) cations, with some evidence for clustering of these cations. The system shows a non-random distribution of vacancy pair alignments, with a preference for 〈100〉 ordering, the extent of which shows thermal variation. MD simulations indicate a predominance of oxide-ion jumps in the 〈100〉 direction.
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spelling pubmed-90621572022-05-04 Defect structure in δ-Bi(5)PbY(2)O(11.5) Borowska-Centkowska, Anna Liu, Xi Krynski, Marcin Leszczynska, Marzena Wrobel, Wojciech Malys, Marcin Hull, Stephen Norberg, Stefan T. Krok, Franciszek Abrahams, Isaac RSC Adv Chemistry A detailed study of the defect structure in a di-substituted δ-Bi(2)O(3) type phase, δ-Bi(5)PbY(2)O(11.5), is presented. Using a combination of conventional Rietveld analysis of neutron diffraction data, reverse Monte Carlo (RMC) analysis of total neutron scattering data and ab initio molecular dynamics (MD) simulations, both average and local structures have been characterized. δ-Bi(5)PbY(2)O(11.5) represents a model system for the highly conducting δ-Bi(2)O(3) type phases, in which there is a higher nominal vacancy concentration than in the unsubstituted parent compound. Uniquely, the methodology developed in this study has afforded the opportunity to study both oxide-ion vacancy ordering as well as specific cation–cation interactions. Oxide-ion vacancies in this system have been found to show a preference for association with Pb(2+) cations, with some evidence for clustering of these cations. The system shows a non-random distribution of vacancy pair alignments, with a preference for 〈100〉 ordering, the extent of which shows thermal variation. MD simulations indicate a predominance of oxide-ion jumps in the 〈100〉 direction. The Royal Society of Chemistry 2019-03-26 /pmc/articles/PMC9062157/ /pubmed/35520691 http://dx.doi.org/10.1039/c9ra01233h Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Borowska-Centkowska, Anna
Liu, Xi
Krynski, Marcin
Leszczynska, Marzena
Wrobel, Wojciech
Malys, Marcin
Hull, Stephen
Norberg, Stefan T.
Krok, Franciszek
Abrahams, Isaac
Defect structure in δ-Bi(5)PbY(2)O(11.5)
title Defect structure in δ-Bi(5)PbY(2)O(11.5)
title_full Defect structure in δ-Bi(5)PbY(2)O(11.5)
title_fullStr Defect structure in δ-Bi(5)PbY(2)O(11.5)
title_full_unstemmed Defect structure in δ-Bi(5)PbY(2)O(11.5)
title_short Defect structure in δ-Bi(5)PbY(2)O(11.5)
title_sort defect structure in δ-bi(5)pby(2)o(11.5)
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9062157/
https://www.ncbi.nlm.nih.gov/pubmed/35520691
http://dx.doi.org/10.1039/c9ra01233h
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