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2-氯-和 2-溴-3-吡啶甲醛:结构、构象异构体、费米共振和振动模式。

2-Chloro- and 2-bromo-3-pyridinecarboxaldehydes: structures, rotamers, fermi resonance and vibration modes.

机构信息

Department of Physics, Karnatak University, Dharwad 580 003, India.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2011 Sep;79(5):1559-65. doi: 10.1016/j.saa.2011.04.088. Epub 2011 May 19.

DOI:10.1016/j.saa.2011.04.088
PMID:21715219
Abstract

FT-Infrared (4000-400 cm(-1)) and NIR-FT-Raman (4000-50 cm(-1)) spectral measurements have been made for 2-chloro- and 2-bromo-3-pyridinecarboxaldehydes. A DFT vibration analysis at B3LYP/6-311++G (d,p) level, valence force-fields and vibrational mode calculations have been performed. Aided by very good agreement between observed and computed vibration spectra, a complete assignment of fundamental vibration modes to the observed absorptions and Raman bands has been proposed. Orientations of the aldehydic group have produced two oblate asymmetric rotamers for each molecule, ON-trans and ON-cis: the ON-trans rotamer being more stable than cis by 3.42 kcal mol(-1) for 2-chloro-3-pyridinecarboxaldehyde and 3.68 kcal mol(-1) for 2-bromo-3-pyridinecarboxaldehyde. High potential energy barrier ca 14 kcal/mol, induced by steric hindrance, restricts rotamers' population to ON-trans only. It is observed that, in the presence of bromine, C-H stretching modes are pronounced; a missing characteristic ring mode in chlorine's presence shows at 1557 cm(-1); the characteristic ring mode at 1051 cm(-1) is diminished; a mixed mode near 707 cm(-1) is enhanced. Further, an observed doublet near 1696-1666 cm(-1) in both IR and Raman spectra is explained on the basis of Fermi resonance between aldehydic carbonyl stretching at 1696 cm(-1) and a combination mode of ring stretch near 1059 cm(-1) and deformation vibration, 625 cm(-1). A strong Raman aldehydic torsional mode at 62 cm(-1) is interpreted to correspond to the dominant ON-trans over cis rotamers population.

摘要

FT-红外(4000-400 cm(-1)) 和近红外 FT-Raman(4000-50 cm(-1)) 光谱已对 2-氯-和 2-溴-3-吡啶甲酰氯进行了测量。在 B3LYP/6-311++G(d,p)水平上进行了 DFT 振动分析、价力场和振动模式计算。通过观察到的和计算出的振动光谱之间非常好的一致性,提出了对基本振动模式到观察到的吸收和拉曼带的完整分配。醛基的取向产生了每个分子的两个扁长非对称的旋转异构体,ON-反式和 ON-顺式:ON-反式异构体比顺式异构体稳定 3.42 kcal mol(-1) 对于 2-氯-3-吡啶甲酰氯和 3.68 kcal mol(-1) 对于 2-溴-3-吡啶甲酰氯。由于位阻,高势能壁垒约为 14 kcal/mol,限制了旋转异构体的分布仅为 ON-反式。观察到,在溴存在下,C-H 伸缩模式明显;在氯存在下缺少特征环模式,出现在 1557 cm(-1);特征环模式在 1051 cm(-1) 处减弱;近 707 cm(-1) 的混合模式增强。此外,在 IR 和 Raman 光谱中都观察到的约 1696-1666 cm(-1) 附近的双峰是基于醛羰基在 1696 cm(-1) 处的伸缩和环伸展附近的组合模式在 1059 cm(-1) 和变形振动,625 cm(-1) 之间的费米共振来解释的。醛扭转模式在 62 cm(-1) 处的强拉曼信号解释为占主导地位的 ON-反式异构体比 cis 异构体的分布。

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