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Crystal and Quantum Chemical Exploration of the Potent Monocarbonyl Curcuminoids to Unveil Their Structural and Intriguing Electronic Properties

机译:有效的单核姜黄素的晶体和量子化学探索,以揭示其结构和有趣的电子特性

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The two isomeric trifluoromethane and nitro containing monocarbonylcurcuminoids: (1E,4E)-2-methyl-1-(4-nitrophenyl)- 5-(4 (trifluoromethyl)phenyl)penta-1,4-dien-3-one (DI-MNTDO ) and (1E,4E)-2-methyl-5-(4-nitrophenyl)-1-(4-(trifluoromethyl) phenyl)penta-1,4-dien-3-one (MO-MNTDO)have been prepared by two consecutive aldol condensation reactions. The chemical structures of the DI-MNTDO and MO-MNTDO have been determined using X-ray crystallographic and spectrometric methods. The single crystal X-Ray diffraction (SC-XRD) data reveals that DI-MNTDO contains two geometrically different molecules in the asymmetric unit, while, MO-MNTDO contains one molecule in the asymmetric unit. Additionally, molecular geometric parameters, vibrational spectral analysis, as well as electronic properties of the above-mentioned molecules have been studied utilizing DFT/B3LYP/6-31G (d, p) approach. The UV-Vis spectral analysis was performed utilizing the time- dependent density functional theory (TD-DFT) with the same level. The natural bond orbitals (NBOs) investigation has been carried out at the B3LYP/6-311+G(d,p) approach to explain the intramolecular hyper conjugative interactions. A plausible concurrence is acquired between experimental and theoretical findings. The frontier molecular orbitals (FMOs) have been achieved by above-mentioned level of theory. Subsequently, the global reactivity parameters are calculated using the energies of FMOs. The chemical potential (μ) order: [MO- MNTDO (μ=-5.0785 eV)] < [DI-MNTDO (μ=-4.9465 eV)]. The obtained findings in context of stability as well as reactivity indicate that DI-MNTDO is more stable and less reactive as compared to MO-MNTDO.
机译:两种异构体三氟甲烷和含硝基含有单碳纤维核苷:(1E,4E,4E)-2-甲基-1-(4-硝基苯基)-5-(4(4(三氟甲基)苯基)penta-1,4-二烯-dien-dien-3-one(di-di-ni-di-) MNTDO)和(1E,4E)-2-甲基-5-(4-硝基苯基)-1-(4-(三氟甲基)苯基)PENTA-1,4-DIEN-3-ONE(MO-MNTDO)通过两个连续的醛醇冷凝反应。使用X射线晶体学和光谱法确定了Di-mntdo和Mo-mntdo的化学结构。单晶体X射线衍射(SC-XRD)数据表明,Di-mntDO在不对称单元中包含两个几何分子,而Mo-mntdo在不对称单元中包含一个分子。此外,已经研究了使用DFT/B3LYP/6-31G(D,P)方法研究了分子几何参数,振动光谱分析以及上述分子的电子性能。使用相同水平的时间依赖密度功能理论(TD-DFT)进行了UV-VIS光谱分析。自然键轨道(NBOS)研究已在B3LYP/6-311+G(d,p)方法上进行解释,以解释分子内超偶联性相互作用。实验和理论发现之间获得了合理的并发。通过上述理论水平,已经实现了前沿分子轨道(FMO)。随后,使用FMO的能量计算全局反应性参数。化学电位(μ)顺序:[mo-mntdo(μ= -5.0785 eV)] <[di-mntdo(μ= -4.9465 eV)]。在稳定性和反应性的情况下获得的发现表明,与Mo-mntdo相比,Di-mntdo更稳定,反应性更低。

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