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首页> 外文期刊>The Journal of Chemical Physics >The effect of large amplitude motions on the vibrational intensities in hydrogen bonded complexes
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The effect of large amplitude motions on the vibrational intensities in hydrogen bonded complexes

机译:大振幅运动对氢键配合物振动强度的影响

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We have developed a model to calculate accurately the intensity of the hydrogen bonded XH-stretching vibrational transition in hydrogen bonded complexes. In the Local Mode Perturbation Theory (LMPT) model, the unperturbed system is described by a local mode (LM) model, which is perturbed by the intermolecular modes of the hydrogen bonded system that couple with the intramolecular vibrations of the donor unit through the potential energy surface. We have applied the model to three complexes containing water as the donor unit and different acceptor units, providing a series of increasing complex binding energy: H2O center dot center dot center dot N-2, H2O center dot center dot center dot H2O, and H2O center dot center dot center dot NH3. Results obtained by the LMPT model are presented and compared with calculated results obtained by other vibrational models and with previous results from gas-phase and helium-droplet experiments. We find that the LMPT model reduces the oscillator strengths of the fundamental hydrogen bonded OH-stretching transition relative to the simpler LM model. (C) 2015 AIP Publishing LLC.
机译:我们开发了一个模型,可以准确计算氢键配合物中氢键XH拉伸振动跃迁的强度。在局部模式扰动理论(LMPT)模型中,不受干扰的系统由局部模式(LM)模型描述,该模型受氢键体系的分子间模式干扰,该分子间模式通过电势与施主单元的分子内振动耦合能量表面。我们将该模型应用于三个以水为供体单元和不同受体单元的络合物,提供了一系列增加的络合物结合能:H2O中心点中心点中心点N-2,H2O中心点中心点中心点H2O和H2O中心点中心点中心点NH3。介绍了通过LMPT模型获得的结果,并将其与其他振动模型获得的计算结果以及气相和氦滴实验的先前结果进行了比较。我们发现,相对于更简单的LM模型,LMPT模型降低了基本氢键OH拉伸转变的振荡器强度。 (C)2015 AIP Publishing LLC。

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