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Vibrational spectra and structure of the cis and trans conformers of methyl nitrite: an ab initio MO study

机译:亚硝酸盐甲基甲基甲基的振动光谱和结构和反式塑壳的结构:AB Initio Mo研究

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摘要

The vibrational and conformational properties exhibited by nethyl nitrite (CH3ONO) were studied by ab initio MO methods (HF-SCF and MP2) using both the 6-31G and 6-311G basis sets without or with the inclusion of diffuse and/or polarization functions. Fully optimized geometries, relative stabilities, dipole moments and harmonic force fields for both the cis and trans conformers of this molecule were determined and the results compared with available experimental data. In agreement with the experimental results, the calculations involving polarization functions at the MP2 level of theory indicate that the most stable conformer of methyl nitrite is the planar cis conformer, where the methyl group is eclipsing the NO bond, while the trans form was predicted to have a higher energy than this form by about 4 kJ mol−1. The conformational dependence of some relevant structural parameters was used to characterize the most important intramolecular interactions present in the studied conformers, and their calculated infrared spectra were used to review previous assignments of the experimentally observed bands for both the normal and deuterated (CD3ONO) species. Chemometrics methods (principal components and two-level factorial designing) were used both to analyze the effect of changing the basis set and level of theory used to perform the calculations, and to aid comparison between the experimental and calculated vibrational spectra
机译:使用6-31G和6-311G基集,从头开始进行MO方法(HF-SCF和MP2),研究了亚硝酸乙酯(CH3ONO)表现出的振动和构象性质,不包含或包含扩散和/或极化函数。确定了该分子的顺式和反式构象异构体的完全优化的几何形状,相对稳定性,偶极矩和谐波力场,并将结果与​​可用的实验数据进行了比较。与实验结果一致,在MP2理论水平上涉及极化函数的计算表明,亚硝酸甲酯最稳定的构象异构体是平面顺式构象异构体,其中的甲基基团覆盖NO键,而反式为预计比该形式具有更高的能量约4 kJ mol-1。使用一些相关结构参数的构象依赖性来表征研究的构象异构体中最重要的分子内相互作用,并使用其计算的红外光谱检查正常和氘代(CD3ONO)的实验观察谱带的先前分配。种类。使用化学计量学方法(主要成分和两级因子设计)来分析更改用于执行计算的基础集和理论水平的影响,并帮助比较实验和计算的振动光谱

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