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Ab initio calculations of the structural, energetic, and vibrational properties of some hydrogen bonded and van der Waals dimers. Part 4. The acetonitrile dimer

机译:从头开始计算某些氢键和范德华二聚体的结构,能量和振动性质。第4部分。乙腈二聚体

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The structures, interaction energies, Mulliken atomic charges, and vibrational spectra of five dimers of acetonitrile, CH3CN, have been determined by means of ab initio molecular orbital theory, at the second order level of Moller-Plesset perturbation theory, using the 6-31++G(d,p) split-valence polarized basis set, augmented with diffuse functions. The structural features of the dimers are discussed, as well as their respective interaction energies, which have been corrected for basis set superposition error by the full counterpoise technique of Boys and Bernardi. The atomic charge reorganizations resulting from dimerization have also been discussed. The vibrational wavenumbers and infrared intensities of each dimer have been computed and, in the case of the most probable dimer, they have been used to determine the wavenumber shifts relative to the corresponding modes of the monomer. The shifts have been compared with those in the infrared and Raman spectra of acetonitrile molecules trapped in cryogenic matrices, previously reported in the literature. The computed and experimental results support the conclusion that the favored dimer structure is a centrosymmetric cyclic species of C-2h symmetry, stabilized by two weak CH . . .N hydrogen bonds. (C) 2001 John Wiley & Sons, Inc. [References: 48]
机译:乙腈的五个二聚体CH3CN的结构,相互作用能,Mulliken原子电荷和振动光谱已通过从头算分子轨道理论,在Moller-Plesset微扰理论的二阶水平使用6-31确定++ G(d,p)分开价极化基集,配有扩散函数。讨论了二聚体的结构特征,以及它们各自的相互作用能,并已通过Boys and Bernardi的完全平衡法对基础叠加误差进行了校正。还讨论了由二聚作用引起的原子电荷重组。已经计算了每个二聚体的振动波数和红外强度,在最可能的二聚体的情况下,已将它们用于确定相对于单体相应模式的波数偏移。该变化已与先前报道在低温基质中的乙腈分子的红外和拉曼光谱进行了比较。计算和实验结果支持以下结论:偏爱的二聚体结构是C-2h对称的中心对称环状物质,由两个弱CH稳定。 。 .N氢键。 (C)2001 John Wiley&Sons,Inc. [参考:48]

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