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AN AB INITIO STUDY OF SOLVENT SHIFTS IN VIBRATIONAL SPECTRA

机译:从头算研究振动光谱中的溶剂

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Using analytical second derivatives of the generalized conductorlike screening model (GCOSMO) we calculate vibrational frequency shifts for several molecules (acetone, methylamine, formic acid, acetic acid, and trans-NMA) solvated in water. In these calculations, results from dielectric continuum approach with and without several explicit water molecules are compared with traditional supermolecule approach. The simple GCOSMO model, where all solvent molecules are treated as a continuum medium, reproduces quite accurately solvent shifts in solutes having moderate hydrogen bondings with water, such as acetone and methylamine. To represent strong solvent effects in formic acid and acetic acid, one should add at least one explicit water molecule in GCOSMO calculations. Solvent effects on solute structure correlate well with frequency shifts. Geometry optimizations and frequency calculations in the GCOSMO-supermolecule approach require only 10%-20% more computational effort than similar calculations in the gas phase. Therefore, this method provides a promising and effective tool for studying reactivity, structural, and spectroscopic properties of realistic solutes. (C) 1996 American Institute of Physics. [References: 55]
机译:使用广义导体样筛查模型(GCOSMO)的分析二阶导数,我们计算了在水中溶剂化的几个分子(丙酮,甲胺,甲酸,乙酸和反式NMA)的振动频移。在这些计算中,将有或没有几个显式水分子的介电连续体方法的结果与传统的超分子方法进行了比较。简单的GCOSMO模型将所有溶剂分子都视为连续介质,该模型非常准确地再现了与水具有适度氢键的溶质中的溶剂位移,例如丙酮和甲胺。为了在甲酸和乙酸中表现出强烈的溶剂作用,应在GCOSMO计算中添加至少一个显式的水分子。溶剂对溶质结构的影响与频移密切相关。与气相中的类似计算相比,GCOSMO-超分子方法中的几何优化和频率计算仅需要10%-20%的计算量。因此,该方法为研究实际溶质的反应性,结构和光谱性质提供了一种有前途的有效工具。 (C)1996年美国物理研究所。 [参考:55]

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