首页> 外文期刊>Journal of Molecular Structure >Investigation of torsional potentials, hindered rotation, molecular structure and vibrational properties of some biphenyl carboxaldehydes using spectroscopic techniques and density functional formalism
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Investigation of torsional potentials, hindered rotation, molecular structure and vibrational properties of some biphenyl carboxaldehydes using spectroscopic techniques and density functional formalism

机译:使用光谱技术和密度函形形式主义对一些联苯基羧醛的扭转电位,阻碍旋转,分子结构和振动性能的研究

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Fourier Transform infrared spectra and Fourier Transform Raman spectra, of biphenyl-4-carboxaldehyde (B4A), biphenyl-3-carboxaldehyde (B3A), and biphenyl-2-carboxaldehyde (B2A), were recorded in the spectral range 4000-450 cm(-1) and 4000-50 cm(-1), respectively. H-1 NMR and C-13 NMR spectra of the three samples were also measured. Quantum chemical calculations were performed using density functional theory (DFT) and B3LYP functional in conjunction with 6-311++G(d,p) basis set in order to determine torsional potentials, barrier to hindered rotation around C-C inter-ring bond and C-C-alpha aromatic-carbonyl bond, optimized structure parameters, general valence force field, harmonic vibrational frequencies, potential energy distribution(PED) and infrared and Raman intensities. Its time-dependent variant (TD-DFT) was used to simulate( 1)H NMR and C-13 NMR spectra of the three molecules under investigation. Observed and calculated frequencies agreed with an rms error 11.4, 10.4, and 11.4 cm(-1) for B4A, B3A, and B2A, respectively. Further, measured infrared and Raman spectra agreed with their computed counter-parts with fair degree of accuracy. Unambiguous vibrational assignments were made for all fundamentals using PED and eigenvectors. Experimental chemical shifts agree well with their theoretical counterparts. Geometry optimization was made for dimers of the three molecules at the same level of theory as employed for the monomers. Existence of intra-molecular and inter-molecular hydrogen bonds was predicted. (C) 2019 Elsevier B.V. All rights reserved.
机译:傅立叶变换红外光谱和傅立叶-4-羧醛(B4A),联苯-3-羧醛(B3A)和联苯-2-羧醛(B2A)的傅立叶变换拉曼光谱记录在4000-450cm( -1)分别为4000-50厘米(-1)。还测量了三个样品的H-1 NMR和C-13 NMR光谱。使用密度泛函理论(DFT)和B3Lyp功能与6-311 ++ g(d,p)的基础设定进行量子化学计算,以确定扭转电位,围绕CC间环键和CC旋转的阻挡层 - 芳族 - 羰基键,优化的结构参数,一般价值场,谐波振动频率,潜在能量分布(PED)和红外和拉曼强度。其时间依赖性变体(TD-DFT)用于模拟在调查中的三种分子的(1)H NMR和C-13 NMR光谱。观察和计算的频率分别与B4A,B3A和B2A分别与RMS误差11.4,10.4和11.4cm(-1)同意。此外,测量的红外和拉曼光谱与其计算的反部件同意,具有公平的准确度。使用PED和特征向量的所有基本原理制作明确的振动作业。实验化学班次与理论同行很好。为单体的三种分子的二聚体制备几何优化,如用于单体的相同理论。预测分子内和分子间氢键的存在性。 (c)2019 Elsevier B.v.保留所有权利。

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