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Synthesis, crystal and molecular structure studies and DFT calculations of phenyl quinoline-2-carboxylate and 2-methoxyphenyl quinoline-2-carboxylate; two new quinoline-2 carboxylic derivatives

机译:苯基喹啉-2-羧酸酯和2-甲氧基苯基喹啉-2-羧酸酯的合成,晶体和分子结构研究以及DFT计算;两种新的喹啉2羧酸衍生物

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摘要

The crystal and molecular structures of the title compounds, phenyl quinoline-2-carboxylate and 2-methoxyphenyl quinoline-2-carboxylate, two new derivatives of quinolone-2-carboxylic acid, are reported and confirmed by single crystal X-ray diffraction and spectroscopic data. Compound (I), C16H11NO2, crystallizes in the monoclinic space group P21/c, with 8 molecules in the unit cell. The unit cell parameters are a = 14.7910(3) Å; b = 5.76446(12) Å; c = 28.4012(6) Å; β = 99.043(2)°; V = 2391.45(9) Å3. Compound (II), C17H13NO5, crystallizes in the monoclinic space group P21/n with 4 molecules in the unit cell. The unit cell parameters are a = 9.6095(3) Å; b = 10.8040(3) Å; c = 13.2427(4) Å; β = 102.012(3)°; V = 1344.76(7) Å3. Density functional theory (DFT) geometry optimized molecular orbital calculations were performed and frontier molecular orbitals of each compound are displayed. Correlation between the calculated molecular orbital energies (eV) for the surfaces of the frontier molecular orbitals to the electronic excitation transitions from the absorption spectra of each compound has been proposed. Additionally, similar correlations observed among six closely related compounds examining small structural differences to their frontier molecular orbital surfaces and from their DFT molecular orbital energies, provide further support for the suggested assignments of the title compounds.
机译:报告并通过单晶X射线衍射和光谱证实了标题化合物的结晶和分子结构,苯基喹啉-2-羧酸盐和2-甲氧基苯基喹啉-2-羧酸盐,喹诺酮-2-羧酸的两种新衍生物。数据。化合物(I)C16H11NO2在单斜空间群P21 / c中结晶,在晶胞中有8个分子。晶胞参数为a = 14.7910(3)Å; b = 5.76446(12)Å; c = 28.4012(6)Å; β= 99.043(2)°; V = 2391.45(9)Å3。化合物(II)C17H13NO5在单斜晶空间群P21 / n中结晶,在晶胞中有4个分子。晶胞参数为a = 9.6095(3)Å; b = 10.8040(3)Å; c = 13.2427(4)Å; β= 102.012(3)°; V = 1344.76(7)Å3。进行了密度泛函理论(DFT)几何优化的分子轨道计算,并显示了每种化合物的前沿分子轨道。已经提出了边界分子轨道的表面的计算的分子轨道能量(eV)与每种化合物的吸收光谱的电子激发跃迁之间的相关性。此外,在六个密切相关的化合物中观察到的相似相关性为它们的前沿分子轨道表面和DFT分子轨道能量之间的微小结构差异提供了进一步的支持,为标题化合物的建议分配提供了进一步的支持。

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