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Structural conformations and electronic interactions of the natural product, oroxylin: a vibrational spectroscopic study

机译:天然产物Oroxylin的结构构象和电子相互作用:振动光谱研究

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摘要

The oroxylin, 5,7-dihydroxy 6-methoxy flavone is a potent natural product extracted from 'Vitex peduncularis'. Density functional theory (DFT) at B3LYP/6-311G(d,p) level has been used to compute energies of different conformers of oroxylin to find out their stability, the optimized geometry of the most stable conformer and its vibrational spectrum. The conformer ORLN-1 with torsion angles 0, 180,180 and 0 degrees, respectively, for H-13-O-12-C-6 -C-5, H-14-O-10-C-4-C-5, H-13-O-12-C-6-C-5 and H-14-O-10-C-4-C-5 is found to be most stable. The optimized geometry reveals that the dihedral angle p between phenyl ring B and the chrome part of the molecule in -19.21 degrees is due to the repulsive force due to steric interaction between the ortho-hydrogen atom H-29 of the B ring and H-18 of the ring C (H-29 ... H-18 = 2.198 angstrom). A vibrational analysis based on the near-infrared Fourier transform(NIR-FT) Raman, Fourier transform-infrared (FT-IR) and the computed spectrum reveals that the methoxy group is influenced by the oxygen lone pair-aryl p, orbital by back donation. Hence the stretching and bending vibrational modes of the methoxy group possess the lowest wavenumber from the normal values of methyl group. The carbonyl stretching vibrations have been lowered due to conjugation and hydrogen bonding in the molecules. The intramolecular H-bonding and nonbonded intramolecular interactions shift the band position of O-10-H-14 and O-12-H-13 stretching modes, which is justified by DFT results. Copyright (C) 2008 John Wiley & Sons, Ltd.
机译:Oroxylin,5,7-二羟基6-甲氧基黄酮是从'Vitex peduncularis'提取的有效天然产物。已使用B3LYP / 6-311G(d,p)级别的密度泛函理论(DFT)来计算不同构型的羟苯丙氨酸的能量,以找出其稳定性,最稳定构型的最佳几何形状及其振动光谱。对于H-13-O-12-C-6 -C-5,H-14-O-10-C-4-C-5,规角ORLN-1的扭转角分别为0、180,180和0度。发现H-13-O-12-C-6-C-5和H-14-O-10-C-4-C-5最稳定。优化的几何结构表明,苯环B与分子的铬部分之间的二面角p在-19.21度,是由于B环的氢氢原子​​H-29与H-之间的空间相互作用而产生的排斥力环C的18个(H-29 ... H-18 = 2.198埃)。基于近红外傅立叶变换(NIR-FT)拉曼光谱,傅立叶变换红外(FT-IR)和计算光谱的振动分析表明,甲氧基受氧孤对芳基p的影响,其轨道反方向捐款。因此,从甲基的正常值来看,甲氧基的拉伸和弯曲振动模式具有最低的波数。由于分子中的共轭和氢键作用,羰基拉伸振动得以降低。分子内的H键和非键的分子内相互作用会改变O-10-H-14和O-12-H-13拉伸模式的能带位置,这通过DFT结果证明是正确的。版权所有(C)2008 John Wiley&Sons,Ltd.

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