Dielectric ordering of water molecules arranged in a dipolar lattice

Despite the apparent simplicity of a H2O molecule, the mutual ferroelectric ordering of the molecules is unresolved. Here, the authors realize a macroscopic ferroelectric phase transition in a network of dipole-dipole coupled water molecules located in nanopores of gemstone.

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Autores principales: M. A. Belyanchikov, M. Savinov, Z. V. Bedran, P. Bednyakov, P. Proschek, J. Prokleska, V. A. Abalmasov, J. Petzelt, E. S. Zhukova, V. G. Thomas, A. Dudka, A. Zhugayevych, A. S. Prokhorov, V. B. Anzin, R. K. Kremer, J. K. H. Fischer, P. Lunkenheimer, A. Loidl, E. Uykur, M. Dressel, B. Gorshunov
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/32b2087b7899424a8193b0b91dd8b29c
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spelling oai:doaj.org-article:32b2087b7899424a8193b0b91dd8b29c2021-12-02T14:53:51ZDielectric ordering of water molecules arranged in a dipolar lattice10.1038/s41467-020-17832-y2041-1723https://doaj.org/article/32b2087b7899424a8193b0b91dd8b29c2020-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-17832-yhttps://doaj.org/toc/2041-1723Despite the apparent simplicity of a H2O molecule, the mutual ferroelectric ordering of the molecules is unresolved. Here, the authors realize a macroscopic ferroelectric phase transition in a network of dipole-dipole coupled water molecules located in nanopores of gemstone.M. A. BelyanchikovM. SavinovZ. V. BedranP. BednyakovP. ProschekJ. ProkleskaV. A. AbalmasovJ. PetzeltE. S. ZhukovaV. G. ThomasA. DudkaA. ZhugayevychA. S. ProkhorovV. B. AnzinR. K. KremerJ. K. H. FischerP. LunkenheimerA. LoidlE. UykurM. DresselB. GorshunovNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-9 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
M. A. Belyanchikov
M. Savinov
Z. V. Bedran
P. Bednyakov
P. Proschek
J. Prokleska
V. A. Abalmasov
J. Petzelt
E. S. Zhukova
V. G. Thomas
A. Dudka
A. Zhugayevych
A. S. Prokhorov
V. B. Anzin
R. K. Kremer
J. K. H. Fischer
P. Lunkenheimer
A. Loidl
E. Uykur
M. Dressel
B. Gorshunov
Dielectric ordering of water molecules arranged in a dipolar lattice
description Despite the apparent simplicity of a H2O molecule, the mutual ferroelectric ordering of the molecules is unresolved. Here, the authors realize a macroscopic ferroelectric phase transition in a network of dipole-dipole coupled water molecules located in nanopores of gemstone.
format article
author M. A. Belyanchikov
M. Savinov
Z. V. Bedran
P. Bednyakov
P. Proschek
J. Prokleska
V. A. Abalmasov
J. Petzelt
E. S. Zhukova
V. G. Thomas
A. Dudka
A. Zhugayevych
A. S. Prokhorov
V. B. Anzin
R. K. Kremer
J. K. H. Fischer
P. Lunkenheimer
A. Loidl
E. Uykur
M. Dressel
B. Gorshunov
author_facet M. A. Belyanchikov
M. Savinov
Z. V. Bedran
P. Bednyakov
P. Proschek
J. Prokleska
V. A. Abalmasov
J. Petzelt
E. S. Zhukova
V. G. Thomas
A. Dudka
A. Zhugayevych
A. S. Prokhorov
V. B. Anzin
R. K. Kremer
J. K. H. Fischer
P. Lunkenheimer
A. Loidl
E. Uykur
M. Dressel
B. Gorshunov
author_sort M. A. Belyanchikov
title Dielectric ordering of water molecules arranged in a dipolar lattice
title_short Dielectric ordering of water molecules arranged in a dipolar lattice
title_full Dielectric ordering of water molecules arranged in a dipolar lattice
title_fullStr Dielectric ordering of water molecules arranged in a dipolar lattice
title_full_unstemmed Dielectric ordering of water molecules arranged in a dipolar lattice
title_sort dielectric ordering of water molecules arranged in a dipolar lattice
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/32b2087b7899424a8193b0b91dd8b29c
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