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N-(5-(4-甲基苯甲酰基)-2-氧代-4-(4-甲基苯基)嘧啶-1(2H)-基)-4-甲基苯甲酰胺的合成、实验光谱(IR 和拉曼及 NMR)、振动分析和理论 DFT 研究。

Synthesis, experimental spectra (IR & Raman and NMR), vibrational analysis and theoretical DFT investigations of N-(5-(4-methylbenzoyl)-2-oxo-4-(4-methylphenyl)pyrimidine-1(2H)-yl)-4-methylbenzamide.

机构信息

Erciyes University, Faculty of Science, Department of Chemistry, Kayseri, Turkey.

Erciyes University, Faculty of Science, Department of Chemistry, Kayseri, Turkey.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2014 Aug 14;129:22-34. doi: 10.1016/j.saa.2014.02.176. Epub 2014 Mar 20.

Abstract

The title molecule, N-(5-(4-methylbenzoyl)-2-oxo-4-(4-methylphenyl)pyrimidine-1(2H)-yl)-4-methylbenzamide (C27H23N3O3), was synthesized and characterized by elemental analysis, IR, Raman, (1)H and (13)C NMR spectral data. To determine conformational flexibility, potential energy surfaces of the title compound were obtained by DFT regarding the selected degree of torsional freedom, which was varied from 0° to 360° in 6° and 20° steps. The ten conformers of the title compound were determined and it was found that the conformer 1 basis the most stable one. All conformers were also optimized by using the density functional theory (DFT/B3LYP) method with the 6-31G(d,p), 6-311G(d,p) and cc-pVDZ basis sets in the ground state. Potential energy distribution was calculated with the 6-31G(d,p) basis set. The vibrational spectra were recorded in solid phase IR and Raman spectra were compared based on the results of the theoretical calculations. The formation of hydrogen bonds was explained using natural bond orbital (NBO) analysis and spectroscopic analysis. NMR analysis and frontier molecular orbitals (FMOs) were also investigated by DFT.

摘要

标题分子,N-(5-(4-甲基苯甲酰基)-2-氧代-4-(4-甲基苯基)嘧啶-1(2H)-基)-4-甲基苯甲酰胺(C27H23N3O3),通过元素分析、IR、拉曼、(1)H 和(13)C NMR 光谱数据进行了合成和表征。为了确定构象灵活性,通过 DFT 获得了标题化合物的势能面,选择的扭转自由度从 0°到 360°,以 6°和 20°的步长变化。确定了标题化合物的十个构象,发现构象 1 是最稳定的构象之一。所有构象也都使用密度泛函理论(DFT/B3LYP)方法在基态下使用 6-31G(d,p)、6-311G(d,p)和 cc-pVDZ 基组进行了优化。使用 6-31G(d,p)基组计算了势能分布。在固相 IR 中记录了振动光谱,并基于理论计算的结果对 Raman 光谱进行了比较。使用自然键轨道(NBO)分析和光谱分析解释了氢键的形成。还通过 DFT 研究了 NMR 分析和前沿分子轨道(FMO)。

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