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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Local-Monomer Calculations of the Intramolecular IR Spectra of the Cage and Prism Isomers of HOD(D2O)(5) and HOD and D2O Ice lh
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Local-Monomer Calculations of the Intramolecular IR Spectra of the Cage and Prism Isomers of HOD(D2O)(5) and HOD and D2O Ice lh

机译:HOD(D2O)(5)和HOD和D2O Ice lh的笼和棱镜异构体的分子内红外光谱的局部单体计算

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Dilute mixtures of HOD in pure H2O and D2O ices and liquid have been used by experimentalists to focus on the spectrum and vibrational dynamics of the local OH and OD stretches and bend of HOD in these complex and highly heterogeneous environments. The hexamer version of the mixture is HOD(D2O)(5). The cage isomer of this cluster was recently studied and analyzed theoretically using local-mode calculations of the IR spectrum by Skinner and co-workers. This and the further possibility of experimental investigation of this cluster have stimulated us to study HOD(D2O)(5) using the three-mode, local-monomer model, with the ab initio WHBB dipole moment and potential energy surfaces. Both the cage and prism isomers of this cluster are considered. In addition to providing additional insight into the HOD portion of the spectrum, the spectral signatures of each D2O are also presented in the range of 1000-4000 cm(-1). The OH stretch bands of both the prism and cage isotopomers exhibit rich structures in the range of 3100-3700 cm(-1) that are indicative of the position of the HOD in these hexamers. A preliminary investigation of the site preference of the HOD is also reported for both cage and prism HOD(D2O)(5) using an harmonic zero-point energy analysis of the entire cluster. This indicates that the energies of free-OH sites are lower than the ones of H-bonded OH sites. Finally, following our earlier work on the IR spectra of H2O ice models, we present IR spectra of pure D2O and HOD.
机译:实验人员已使用纯H2O和D2O冰和液体中HOD的稀释混合物来关注这些复杂且高度异质环境中HOD的局部OH和OD拉伸和弯曲的光谱和振动动力学。混合物的六聚体形式为HOD(D2O)(5)。 Skinner及其同事最近使用IR的局部模式计算研究了该簇的笼形异构体,并在理论上进行了分析。对这个簇的实验研究的这种可能性和进一步的可能性激发了我们使用从头开始的WHBB偶极矩和势能面的三模式局部单体模型研究HOD(D2O)(5)。同时考虑了该簇的笼形和棱柱异构体。除了提供对光谱的HOD部分的更多了解之外,每个D2O的光谱特征还显示在1000-4000 cm(-1)的范围内。棱柱形和笼形异构体的OH拉伸带均显示3100-3700 cm(-1)范围内的丰富结构,这些结构指示HOD在这些六聚体中的位置。还使用整个群集的谐波零点能量分析对笼式和棱镜式HOD(D2O)(5)进行了HOD位置偏爱的初步调查。这表明游离OH位的能量低于与H键合的OH位的能量。最后,遵循我们先前关于H2O冰模型的IR光谱的工作,我们提出了纯D2O和HOD的IR光谱。

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