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Vibrational spectrum of condensed H2O in hydrogen-bonding environment: an ab initio simulation study

机译:氢键环境中冷凝水的振动光谱:从头算研究

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Local hydrogen-bonding environments have important influences on the intra-molecular O-H stretchings of H2O molecules. The relationship between the contributions of intra-molecular O-H stretching and the local hydrogen-bonding environments is investigated using ab initio simulation for a condensed H2O system at 300K, 1.7 g/cm(3), and calculated/estimated pressure of approximately 9 GPa. The calculation results demonstrate that the local hydrogen-bonding environments around the two intra-molecular hydrogen atoms are not always similar. The existence of asymmetric local hydrogen environments will result in decoupling of the intra-molecular O-H stretchings in the molecule; thus, the broad O-H stretching band may be decomposed into a sum that includes isolated intra-molecular O-H stretchings but not symmetric stretching and asymmetric stretching. This research serves as a reminder to pay attention to the influence of an asymmetric local hydrogen-bonding environment on the vibrational details of the H2O molecular system and will facilitate the interpretation of measurements of the infrared and Raman spectra of the condensed H2O systems.
机译:局部氢键环境对H2O分子的分子内O-H拉伸有重要影响。分子内O-H拉伸的贡献与局部氢键环境之间的关系使用300 K 1.7 g / cm(3)的冷凝H2O系统的从头算进行了研究,计算/估计的压力约为9 GPa。计算结果表明,两个分子内氢原子周围的局部氢键环境并不总是相似的。不对称局部氢环境的存在将导致分子内分子内O-H延伸的解偶联;因此,宽的O-H拉伸带可分解为一个总和,其中包括孤立的分子内O-H拉伸,但不包括对称拉伸和不对称拉伸。这项研究提醒人们注意不对称的局部氢键环境对H2O分子系统振动细节的影响,并将有助于解释冷凝H2O系统的红外光谱和拉曼光谱。

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