Computational analysis of vibrational spectrum and hydrogen bonds of ice XVII
Autor: | Zhen-Yu Yuan, Xiao-Ling Qin, Hui-Wen Luo, Peng Zhang, Lu Jiang, Yue Gu, Kai Zhang, Jing-Wen Cao, Xu-Liang Zhu, Ze-Ren Wang |
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Rok vydání: | 2019 |
Předmět: |
Physics
Hydrogen bond Clathrate hydrate General Physics and Astronomy Ice Ih 01 natural sciences Molecular physics Ice Ic 010305 fluids & plasmas Normal mode Molecular vibration Phase (matter) 0103 physical sciences Density functional theory Astrophysics::Earth and Planetary Astrophysics Physics::Chemical Physics 010306 general physics Physics::Atmospheric and Oceanic Physics |
Zdroj: | New Journal of Physics. 21:043054 |
ISSN: | 1367-2630 |
DOI: | 10.1088/1367-2630/ab1513 |
Popis: | Based on first-principles density functional theory, we investigated the relationship between the vibrational normal modes and the spectrum of the newest laboratory-prepared ice phase, an empty clathrate hydrate structure from gas hydrate named ice XVII. A 48-molecule supercell was designed to mimic the hydrogen-disordered structure. Despite its much lower density than ice Ih, its phonon density of states shows features very similar to those of that phase. In our previous studies of ice Ic and ice XIV, we found two basic hydrogen bond vibrational modes in these hydrogen-ordered ice phases, which contribute two sharp hydrogen bond peaks in the translation region. In this study, we found that this rule also holds in the hydrogen-disordered phase ice XVII. A water molecule vibrating along its angle bisector possesses strong energy, because this vibrational mode involves oscillation against four bonded neighbors. In contrast, a water molecule vibrating perpendicular to its angle bisector has low energy because this mode involves only two of the molecule’s hydrogen bonds. This is an evidence in hydrogen-disordered ice and strengthens our proposal that the existence of two basic hydrogen bond vibrational modes is a general rule among ice family. |
Databáze: | OpenAIRE |
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