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Impact of intermolecular vibrational coupling effects on the sum-frequency generation spectra of the water/air interface

机译:分子间振动耦合效应对水/空气接口的和频率产生光谱的影响

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摘要

We have examined the impact of intermolecular vibrational coupling effects of the O-H stretch modes, as obtained by the surface-specific velocity-velocity correlation function approach, on the simulated sum-frequency generation spectra of the water/air interface. Our study shows that the inclusion of intermolecular coupling effects within the first three water layers, i.e. from the water/air interface up to a distance of 6 angstrom towards the bulk, is essential to reproduce the experimental SFG spectra. In particular, we find that these intermolecular vibrational contributions to the SFG spectra of the water/air interface are dominated by the coupling between the SFG active interfacial and SFG inactive bulk water molecules. Moreover, we find that most of the intermolecular vibrational contributions to the spectra originate from the coupling between double-donor water molecules only, whereas the remaining contributions originate mainly from the coupling between single-donor and double-donor water molecules.
机译:我们研究了通过表面特定速度 - 速度相关函数方法的模拟和频率产生函数方法而获得的分子间振动耦合效应的影响。我们的研究表明,在前三个水层内包含分子间耦合效应,即从水/空气接口到朝向体积6距离的距离,对于再现实验性SFG光谱至关重要。特别地,我们发现,这些分子间振动贡献对水/空气界面的SFG光谱的贡献是由SFG活性界面和SFG非活性散装水分子之间的偶联的主导。此外,我们发现对光谱的大部分分子间振动贡献起源于双供体水分子之间的偶联,而剩余的贡献主要来自单助剂和双供体水分子之间的偶联。

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