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首页> 外文期刊>International Journal of Quantum Chemistry >Study of Phenothiazine and N-Methyl Phenothiazine by Infrared, Raman, ~1H-, and ~13C-NMR Spectroscopies
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Study of Phenothiazine and N-Methyl Phenothiazine by Infrared, Raman, ~1H-, and ~13C-NMR Spectroscopies

机译:红外,拉曼,〜1H-和〜13C-NMR光谱研究吩噻嗪和N-甲基吩噻嗪

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摘要

A complete vibrational analysis of the Fourier transform (FT) infrared (IR) and FT-Raman spectra of both molecules was carried out using quantum chemical calculations. The structure of phenothiazine (PTZ) and N-methylphenothiazine (N-MePTZ) were studied by semiempirical, and ab initio methods. Different basis sets and two new procedures for scaling the frequencies of the ring modes were used. Vibrational data of the methyl group in N-MePTZ were interpreted in terms of the different molecular conformations in the solid state. The ~1H- and ~13C-nuclear magnetic resonance (NMR) data were interpreted in terms of the electron densities on the atoms and the stacking solute-solute association in dimethyl sulfoxide solution. Chemical shifts were related to the Merz-Kollman atomic charges.
机译:使用量子化学计算对两个分子的傅立叶变换(FT)红外(FT)和FT-拉曼光谱进行了完整的振动分析。通过半经验和从头算的方法研究了吩噻嗪(PTZ)和N-甲基吩噻嗪(N-MePTZ)的结构。使用了不同的基集和用于缩放环形模式频率的两个新过程。 N-MePTZ中甲基的振动数据是根据固态中不同的分子构象来解释的。 〜1H和〜13C核磁共振(NMR)数据是根据原子上的电子密度和在二甲亚砜溶液中堆积的溶质-溶质缔合来解释的。化学位移与Merz-Kollman原子电荷有关。

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