Incipient ferroelectricity of water molecules confined to nano-channels of beryl

Ferroelectric orders hardly exist in liquid or ice state of water, despite its enormous molecular electrical polarizability. Here, Gorshunov et al. report incipient ferroelectricity in chains of interacting water molecules by placing them in the structural channels of a beryl crystal.

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Autores principales: B. P. Gorshunov, V. I. Torgashev, E. S. Zhukova, V. G. Thomas, M. A. Belyanchikov, C. Kadlec, F. Kadlec, M. Savinov, T. Ostapchuk, J. Petzelt, J. Prokleška, P. V. Tomas, E. V. Pestrjakov, D. A. Fursenko, G. S. Shakurov, A. S. Prokhorov, V. S. Gorelik, L. S. Kadyrov, V. V. Uskov, R. K. Kremer, M. Dressel
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/281009f688b14a92b6b5bcaf27630e83
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spelling oai:doaj.org-article:281009f688b14a92b6b5bcaf27630e832021-12-02T15:35:00ZIncipient ferroelectricity of water molecules confined to nano-channels of beryl10.1038/ncomms128422041-1723https://doaj.org/article/281009f688b14a92b6b5bcaf27630e832016-09-01T00:00:00Zhttps://doi.org/10.1038/ncomms12842https://doaj.org/toc/2041-1723Ferroelectric orders hardly exist in liquid or ice state of water, despite its enormous molecular electrical polarizability. Here, Gorshunov et al. report incipient ferroelectricity in chains of interacting water molecules by placing them in the structural channels of a beryl crystal.B. P. GorshunovV. I. TorgashevE. S. ZhukovaV. G. ThomasM. A. BelyanchikovC. KadlecF. KadlecM. SavinovT. OstapchukJ. PetzeltJ. ProkleškaP. V. TomasE. V. PestrjakovD. A. FursenkoG. S. ShakurovA. S. ProkhorovV. S. GorelikL. S. KadyrovV. V. UskovR. K. KremerM. DresselNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-10 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
B. P. Gorshunov
V. I. Torgashev
E. S. Zhukova
V. G. Thomas
M. A. Belyanchikov
C. Kadlec
F. Kadlec
M. Savinov
T. Ostapchuk
J. Petzelt
J. Prokleška
P. V. Tomas
E. V. Pestrjakov
D. A. Fursenko
G. S. Shakurov
A. S. Prokhorov
V. S. Gorelik
L. S. Kadyrov
V. V. Uskov
R. K. Kremer
M. Dressel
Incipient ferroelectricity of water molecules confined to nano-channels of beryl
description Ferroelectric orders hardly exist in liquid or ice state of water, despite its enormous molecular electrical polarizability. Here, Gorshunov et al. report incipient ferroelectricity in chains of interacting water molecules by placing them in the structural channels of a beryl crystal.
format article
author B. P. Gorshunov
V. I. Torgashev
E. S. Zhukova
V. G. Thomas
M. A. Belyanchikov
C. Kadlec
F. Kadlec
M. Savinov
T. Ostapchuk
J. Petzelt
J. Prokleška
P. V. Tomas
E. V. Pestrjakov
D. A. Fursenko
G. S. Shakurov
A. S. Prokhorov
V. S. Gorelik
L. S. Kadyrov
V. V. Uskov
R. K. Kremer
M. Dressel
author_facet B. P. Gorshunov
V. I. Torgashev
E. S. Zhukova
V. G. Thomas
M. A. Belyanchikov
C. Kadlec
F. Kadlec
M. Savinov
T. Ostapchuk
J. Petzelt
J. Prokleška
P. V. Tomas
E. V. Pestrjakov
D. A. Fursenko
G. S. Shakurov
A. S. Prokhorov
V. S. Gorelik
L. S. Kadyrov
V. V. Uskov
R. K. Kremer
M. Dressel
author_sort B. P. Gorshunov
title Incipient ferroelectricity of water molecules confined to nano-channels of beryl
title_short Incipient ferroelectricity of water molecules confined to nano-channels of beryl
title_full Incipient ferroelectricity of water molecules confined to nano-channels of beryl
title_fullStr Incipient ferroelectricity of water molecules confined to nano-channels of beryl
title_full_unstemmed Incipient ferroelectricity of water molecules confined to nano-channels of beryl
title_sort incipient ferroelectricity of water molecules confined to nano-channels of beryl
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/281009f688b14a92b6b5bcaf27630e83
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