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首页> 外文期刊>Journal of physical chemistry letters >Differences in the Vibrational Dynamics of H2O and D2O: Observation of Symmetric and Antisymmetric Stretching Vibrations in Heavy Water
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Differences in the Vibrational Dynamics of H2O and D2O: Observation of Symmetric and Antisymmetric Stretching Vibrations in Heavy Water

机译:H2O和D2O振动动力学的差异:重水中对称和非对称拉伸振动的观察

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摘要

Water's ability to donate and accept hydrogen bonds leads to unique and complex collective dynamical phenomena associated with its hydrogen-bond network It is appreciated that the vibrations governing liquid water's molecular dynamics are delocalized, with nuclear motion evolving coherently over the span of several molecules. Using two-dimensional infrared spectroscopy, we have found that the nuclear motions of heavy water, D2O, are qualitatively different than those of H2O. The nonlinear spectrum of liquid (DO)-O-2 reveals distinct O-D stretching resonances, in contrast to H2O. Furthermore, our data indicates that condensed-phase O-D vibrations have a different character than those in the gas phase, which we understand in terms of weakly delocalized symmetric and antisymmetric stretching vibrations. This difference in molecular dynamics reflects the shift in the balance between intra- and intermolecular couplings upon deuteration, an effect which can be understood in terms of the anharmonicity of the nuclear potential energy surface.
机译:水提供和接受氢键的能力导致与其氢键网络相关的独特而复杂的集体动力学现象。人们认识到,控制液态水分子动力学的振动是局部的,核运动在几个分子的范围内连贯地发展。使用二维红外光谱法,我们发现重水D2O的核运动在质量上与H2O的核运动不同。与H2O相比,液态(DO)-O-2的非线性光谱揭示了独特的O-D拉伸共振。此外,我们的数据表明,凝聚相O-D振动与气相相比具有不同的特征,我们从弱离域对称和反对称拉伸振动方面了解这一点。分子动力学上的这种差异反映了氘化时分子内和分子间偶联之间平衡的转变,这一效应可以从核势能表面的非谐性方面理解。

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