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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Experimental IR and Raman spectra and quantum chemical studies of molecular structures, conformers and vibrational characteristics of nicotinic acid and its N-oxide
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Experimental IR and Raman spectra and quantum chemical studies of molecular structures, conformers and vibrational characteristics of nicotinic acid and its N-oxide

机译:烟酸及其氮氧化物的分子结构,构象异构体和振动特性的实验红外光谱和拉曼光谱以及量子化学研究

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摘要

FTIR and Raman spectra of nicotinic acid and its N-oxide have been recorded and analyzed. The stabilities, optimized molecular geometries, APT charges and vibrational characteristics for the two possible conformers of nicotinic acid and its N-oxide have been computed using DFT method. The E (trans) conformers of both the molecules are found to be more stable and less polar than their respective Z (cis) conformers. Due to addition of an O atom at the N1 site in nicotinic acid the magnitudes of atomic charges on all the H atomic sites of the nicotinic acid N-oxide molecule are found to increase. Most of the vibrational frequencies have nearly the same magnitude for the two conformers of both the molecules. However, significant changes are noticed in their IR intensities, Raman activities and depolarization ratios of the Raman bands. The calculated frequencies have been correlated with the experimental frequencies.
机译:烟酸及其氮氧化物的FTIR和拉曼光谱已被记录和分析。使用DFT方法计算了烟酸及其N-氧化物的两个可能构象的稳定性,优化的分子几何结构,APT电荷和振动特性。发现两个分子的E(反式)构象比它们各自的Z(顺式)构象更稳定且极性更低。由于在烟酸的N1位点添加了O原子,因此发现烟酸N-氧化物分子的所有H原子位点上的原子电荷的量增加。对于两个分子的两个构象异构体,大多数振动频率具有几乎相同的幅度。然而,注意到它们的IR强度,拉曼活性和拉曼带的去极化率发生了显着变化。计算的频率已与实验频率相关。

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