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Computational Analysis of Exotic Molecular and Atomic Vibrations in Ice XV

机译:冰十五中外来分子和原子振动的计算分析

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摘要

It is always difficult to assign the peaks of a vibrational spectrum in the far-infrared region. The two distinct peaks seen in many ice phases are still a mystery to date. The normal modes of ice XV were calculated using the CASTEP code based on first-principles density functional theory. On the basis of vibrational modes analysis, we divided the translational modes into three categories: four-bond vibrations, which have the highest energy levels; two-bond vibrations, which have medium levels of energy; and relative vibrations between two sublattices, which have the lowest energy. Whale et al. found that some intramolecular stretching modes include the isolated vibration of only one O–H bond, whereas the others do not vibrate in ice XV. We verified this phenomenon in this study and attributed it to local tetrahedral deformation. Analysis of normal modes, especially in the translation and stretching band of ice XV, clarified the physical insights of the vibrational spectrum and can be used with other ice phases.
机译:始终很难在远红外区域分配振动频谱的峰值。迄今为止,在许多冰期中看到的两个不同的峰仍然是个谜。基于第一原理密度泛函理论,使用CASTEP代码计算冰XV的正常模式。在振动模态分析的基础上,我们将平移模态分为三类:四键振动,具有最高的能级;四键振动。具有中等能量水平的双键振动;以及能量最低的两个子晶格之间的相对振动。鲸鱼等。发现一些分子内拉伸模式仅包括一个氢键的孤立振动,而其他分子在冰十五中不振动。我们在这项研究中验证了这种现象,并将其归因于局部四面体变形。正常模式的分析,尤其是在冰XV的平移和拉伸带中,阐明了振动光谱的物理见解,可以与其他冰相一起使用。

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