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Principles of weakly ordered domains in intermetallics: the cooperative effects of atomic packing and electronics in Fe(2)Al(5)

Many complex intermetallic structures feature a curious juxtaposition of domains with strict 3D periodicity and regions of much weaker order or incommensurability. This article explores the basic principles leading to such arrangements through an investigation of the weakly ordered channels of Fe(2)...

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Autores principales: Vinokur, Anastasiya I., Hilleke, Katerina P., Fredrickson, Daniel C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6396395/
https://www.ncbi.nlm.nih.gov/pubmed/30821262
http://dx.doi.org/10.1107/S2053273318017461
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author Vinokur, Anastasiya I.
Hilleke, Katerina P.
Fredrickson, Daniel C.
author_facet Vinokur, Anastasiya I.
Hilleke, Katerina P.
Fredrickson, Daniel C.
author_sort Vinokur, Anastasiya I.
collection PubMed
description Many complex intermetallic structures feature a curious juxtaposition of domains with strict 3D periodicity and regions of much weaker order or incommensurability. This article explores the basic principles leading to such arrangements through an investigation of the weakly ordered channels of Fe(2)Al(5). It starts by experimentally confirming the earlier crystallographic model of the high-temperature form, in which nearly continuous columns of electron density corresponding to disordered Al atoms emerge. Then electronic structure calculations on ordered models are used to determine the factors leading to the formation of these columns. These calculations reveal electronic pseudogaps near 16 electrons/Fe atom, an electron concentration close to the Al-rich side of the phase’s homogeneity range. Through a reversed approximation Molecular Orbital (raMO) analysis, these pseudogaps are correlated with the filling of 18-electron configurations on the Fe atoms with the support of isolobal σ Fe–Fe bonds. The resulting preference for 16 electrons/Fe requires a fractional number of Al atoms in the Fe(2)Al(5) unit cell. Density functional theory–chemical pressure (DFT-CP) analysis is then applied to investigate how this nonstoichiometry is accommodated. The CP schemes reveal strong quadrupolar distributions on the Al atoms of the channels, suggestive of soft atomic motions along the undulating electron density observed in the Fourier map that allow the Al positions to shift easily in response to compositional changes. Such a combination of preferred electron counts tied to stoichiometry and continuous paths of CP quadrupoles could provide predictive indicators for the emergence of channels of disordered or incommensurately spaced atoms in intermetallic structures.
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spelling pubmed-63963952019-03-13 Principles of weakly ordered domains in intermetallics: the cooperative effects of atomic packing and electronics in Fe(2)Al(5) Vinokur, Anastasiya I. Hilleke, Katerina P. Fredrickson, Daniel C. Acta Crystallogr A Found Adv Research Papers Many complex intermetallic structures feature a curious juxtaposition of domains with strict 3D periodicity and regions of much weaker order or incommensurability. This article explores the basic principles leading to such arrangements through an investigation of the weakly ordered channels of Fe(2)Al(5). It starts by experimentally confirming the earlier crystallographic model of the high-temperature form, in which nearly continuous columns of electron density corresponding to disordered Al atoms emerge. Then electronic structure calculations on ordered models are used to determine the factors leading to the formation of these columns. These calculations reveal electronic pseudogaps near 16 electrons/Fe atom, an electron concentration close to the Al-rich side of the phase’s homogeneity range. Through a reversed approximation Molecular Orbital (raMO) analysis, these pseudogaps are correlated with the filling of 18-electron configurations on the Fe atoms with the support of isolobal σ Fe–Fe bonds. The resulting preference for 16 electrons/Fe requires a fractional number of Al atoms in the Fe(2)Al(5) unit cell. Density functional theory–chemical pressure (DFT-CP) analysis is then applied to investigate how this nonstoichiometry is accommodated. The CP schemes reveal strong quadrupolar distributions on the Al atoms of the channels, suggestive of soft atomic motions along the undulating electron density observed in the Fourier map that allow the Al positions to shift easily in response to compositional changes. Such a combination of preferred electron counts tied to stoichiometry and continuous paths of CP quadrupoles could provide predictive indicators for the emergence of channels of disordered or incommensurately spaced atoms in intermetallic structures. International Union of Crystallography 2019-02-21 /pmc/articles/PMC6396395/ /pubmed/30821262 http://dx.doi.org/10.1107/S2053273318017461 Text en © Anastasiya I. Vinokur et al. 2019 http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution (CC-BY) Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.http://creativecommons.org/licenses/by/4.0/
spellingShingle Research Papers
Vinokur, Anastasiya I.
Hilleke, Katerina P.
Fredrickson, Daniel C.
Principles of weakly ordered domains in intermetallics: the cooperative effects of atomic packing and electronics in Fe(2)Al(5)
title Principles of weakly ordered domains in intermetallics: the cooperative effects of atomic packing and electronics in Fe(2)Al(5)
title_full Principles of weakly ordered domains in intermetallics: the cooperative effects of atomic packing and electronics in Fe(2)Al(5)
title_fullStr Principles of weakly ordered domains in intermetallics: the cooperative effects of atomic packing and electronics in Fe(2)Al(5)
title_full_unstemmed Principles of weakly ordered domains in intermetallics: the cooperative effects of atomic packing and electronics in Fe(2)Al(5)
title_short Principles of weakly ordered domains in intermetallics: the cooperative effects of atomic packing and electronics in Fe(2)Al(5)
title_sort principles of weakly ordered domains in intermetallics: the cooperative effects of atomic packing and electronics in fe(2)al(5)
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6396395/
https://www.ncbi.nlm.nih.gov/pubmed/30821262
http://dx.doi.org/10.1107/S2053273318017461
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