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水二聚体中振动跃迁频率和强度的计算:不同振动方法的比较。

Calculation of vibrational transition frequencies and intensities in water dimer: comparison of different vibrational approaches.

作者信息

Kjaergaard Henrik G, Garden Anna L, Chaban Galina M, Gerber R Benny, Matthews Devin A, Stanton John F

机构信息

Department of Chemistry, University of Otago, P.O. Box 56, Dunedin 9054, New Zealand.

出版信息

J Phys Chem A. 2008 May 8;112(18):4324-35. doi: 10.1021/jp710066f. Epub 2008 Apr 12.

Abstract

We have calculated frequencies and intensities of fundamental and overtone vibrational transitions in water and water dimer with use of different vibrational methods. We have compared results obtained with correlation-corrected vibrational self-consistent-field theory and vibrational second-order perturbation theory both using normal modes and finally with a harmonically coupled anharmonic oscillator local mode model including OH-stretching and HOH-bending local modes. The coupled cluster with singles, doubles, and perturbative triples ab initio method with augmented correlation-consistent triple-zeta Dunning and atomic natural orbital basis sets has been used to obtain the necessary potential energy and dipole moment surfaces. We identify the strengths and weaknesses of these different vibrational approaches and compare our results to the available experimental results.

摘要

我们运用不同的振动方法计算了水和水二聚体中基频和泛频振动跃迁的频率及强度。我们比较了使用简正模式,通过关联校正的振动自洽场理论和振动二阶微扰理论所得到的结果,最后还与包含OH伸缩和HOH弯曲局域模式的谐波耦合非谐振荡器局域模式模型进行了比较。采用含单、双激发以及微扰三激发的耦合簇从头算方法,并结合增强的相关一致三ζ邓宁基组和原子自然轨道基组来获得所需的势能和偶极矩面。我们确定了这些不同振动方法的优缺点,并将我们的结果与现有的实验结果进行了比较。

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