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Orientation and dynamics of water molecules in beryl

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Author
Chlan, VojtěchORCiD Profile - 0000-0001-6963-9273WoS Profile - D-4868-2017Scopus Profile - 8264320700
Adamec, MartinORCiD Profile - 0000-0002-2906-1988WoS Profile - AAH-4911-2019Scopus Profile - 57204852137
Štěpánková, HelenaORCiD Profile - 0000-0002-4051-2495WoS Profile - P-2352-2017Scopus Profile - 7003725998
Thomas, Victor G.
Kadlec, Filip

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Publication date
2023
Published in
Journal of Chemical Physics
Volume / Issue
158 (12)
ISBN / ISSN
ISSN: 0021-9606
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  • Faculty of Mathematics and Physics

This publication has a published version with DOI 10.1063/5.0131510

Abstract
Behavior of individual molecules of normal and heavy water in beryl single crystals was studied by H-1 and H-2 nuclear magnetic resonance spectroscopy. From temperature dependences of the spectra, we deduce that type-I water molecules embedded in the beryl voids are oriented quite differently from the view established in the literature: Different from the earlier assumptions, their H-H lines deviate by about 18 degrees from the hexagonal axis. We suggest that this is due to the molecules attaching to the oxygen atoms forming the beryl structural voids by a hydrogen bond. Our analysis shows that the molecules perform two types of movement: (i) rapid librations around the axis of the hydrogen bond and (ii) less frequent orientational jumps among the 12 possible binding sites in the beryl voids. The frequencies of the librational motions are evaluated from a simple thermodynamic model, providing good quantitative agreement with the frequencies of librations from optical experiments reported earlier.
Keywords
Orientation, dynamics, water, molecules, beryl
Permanent link
https://hdl.handle.net/20.500.14178/2332
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WOS:000959203400001
SCOPUS:2-s2.0-85151329241
PUBMED:37003730
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Full text of this result is licensed under: Creative Commons Uveďte původ 4.0 International

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