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首页> 外文期刊>Journal of Molecular Structure >Potential energy profile, structural, vibrational and reactivity descriptors of trans-2-methoxycinnamic acid by FTIR, FT-Raman and quantum chemical studies
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Potential energy profile, structural, vibrational and reactivity descriptors of trans-2-methoxycinnamic acid by FTIR, FT-Raman and quantum chemical studies

机译:FTIR,FT-Raman和量子化学研究反式-2-甲氧基肉桂酸的势能分布,结构,振动和反应性描述符

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The stable conformers of trans-2 methoxycinnamic acid (trans-2MCA) are determined by potential energy profile analysis. The energies of the s-cis and s-trans conformers of trans-2MCA determined by B3LYP/cc-pVTZ method are -612.9788331 Hartrees and -612.9780953 Hartrees, respectively. The vibrational and electronic investigations of the stable s-cis and s-trans conformers of trans-2 methoxycinnamic acid have been carried out extensively with FTIR and FT Raman spectral techniques. The s-cis conformer (I) with a (C16-C17-C18-O19) dihedral angle equal to 0 degrees is found to be more favoured relative to the one s-trans (II) with (C16-C17-C18-O19) = 180 degrees, possibly due to delocalization, hydrogen bonding and steric repulsion effects between the methoxy and acrylic acid groups. The DFT studies are performed with B3LYP method by utilizing 6-311++G** and cc-pVTZ basis sets to determine the structure, thermodynamic properties, vibrational characteristics and chemical shifts of the compound. The total dipole moments of the conformers determined by B3LYP/cc-pVTZ method are 3.35 D and 4.87 D for s-cis and s-trans, respectively. It reveals the higher polarity of s-trans conformer of trans -2MCA molecule. The electronic and steric influence of the methoxy group on the skeletal frequencies has been analysed. The energies of the frontier molecular orbitals and the LUMO-HOMO energy gap have been determined. The MEP of s-cis conformer lie in the range +1.374e x 10(-2) to -1.374e x 10(-2) while for s-trans it is +1.591e x 10(-2) to -1.591e x 10(-2). The total electron density of s-cis conformer lie in the range +5.273e x 10(-2) to -5.273e x 10(-2) while for s-trans it is +5.403e x 10(-2) to -5.403e x 10(-2). The MEP and total electron density shows that the s-cis conformer is less polar, less reactive and more stable than the s-trans conformer. All the reactivity descriptors of the molecule have been discussed. Intramolecular electronic interactions and their stabilisation energies have analysed by NBO method. (C) 2016 Elsevier B.V. All rights reserved.
机译:反式2甲氧基肉桂酸(反式2MCA)的稳定构象是通过势能图分析确定的。通过B3LYP / cc-pVTZ方法确定的trans-2MCA的s-顺式和s-trans构象异构体的能量分别为-612.9788331 Hartrees和-612.9780953 Hartrees。用FTIR和FT拉曼光谱技术已经广泛进行了反式2-甲氧基肉桂酸的稳定的顺式和顺式构象的振动和电子研究。发现(C16-C17-C18-O19)二面角等于0度的s-顺式构象异构体(I)相对于具有(C16-C17-C18-O19)的一个s-trans(II)更为偏爱)= 180度,可能是由于甲氧基和丙烯酸基团之间的离域,氢键作用和空间排斥作用。 DFT研究采用B3LYP方法,通过利用6-311 ++ G **和cc-pVTZ基集来确定化合物的结构,热力学性质,振动特性和化学位移。对于S-顺式和S-反式,通过B3LYP / cc-pVTZ方法确定的构象体的总偶极矩分别为3.35 D和4.87D。它揭示了反式-2MCA分子的反式构象异构体的极性更高。分析了甲氧基对骨架频率的电子和空间影响。已经确定了前沿分子轨道的能量和LUMO-HOMO能隙。 s-顺式构象异构体的MEP在+ 1.374ex 10(-2)至-1.374ex 10(-2)范围内,而s-trans的MEP在+ 1.591ex 10(-2)至-1.591ex 10(-)之间2)。 s-顺式构象异构体的总电子密度为+ 5.273ex 10(-2)至-5.273ex 10(-2),而s-trans的电子密度为+ 5.403ex 10(-2)至-5.403ex 10 (-2)。 MEP和总电子密度表明,s-顺式构象异构体比s-反式构象异构体极性更小,反应性更低且更稳定。已经讨论了该分子的所有反应性描述符。通过NBO方法分析了分子内电子相互作用及其稳定能。 (C)2016 Elsevier B.V.保留所有权利。

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