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Computational Modelling and Antioxidant Activities of Substituted N-(Methoxysalicylidene) Anilines

机译:取代的N-(甲醇钠)苯胺的计算建模和抗氧化活性

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The computational modelling and total antioxidants activities of three N-(methoxysalicylidene) anilines namely N- (methoxysalicylidene)aniline [I], N-(methoxysalicylidene)-4-chloroaniline [II] and N-(methoxysalicylidene)-5-chloro-2-methylaniline [III] were reported. The compounds were synthesized and characterized by elemental analysis, infrared, ultraviolet, proton and carbon-13 nuclear magnetic resonance. Quantum chemical computations were also performed on the optimized structures of the compounds using Density Functional Theory. The infrared, nuclear magnetic resonance and ultraviolet spectra of the compounds were calculated and the results likened to the equivalent experimental spectra to enhance the structural identification. The calculated infrared, nuclear magnetic resonance and ultraviolet spectra were comparable to the experimental spectra. The total antioxidant capacities of the Schiff bases were evaluated by phosphomolybdenum assay and the results indicated that all the synthesized compounds displayed antioxidant activities.
机译:三种N-(甲醇钠)苯胺的计算建模和总抗氧化剂活性是N-(甲醇钠丙烯)苯胺[I],N-(甲氧基甲基硅氧烷)-4-氯苯胺[II]和N-(甲氧基丙烯酯)-5-氯-2据报道 - 甲基苯胺[III]。通过元素分析,红外线,紫外,质子和碳-13核磁共振合成化合物并表征。使用密度函数理论还对化合物的优化结构进行量子化学计算。计算化合物的红外,核磁共振和紫外光谱,并将结果比作相当实验光谱,以增强结构鉴定。计算的红外核磁共振和紫外光谱与实验光谱相当。通过磷钼测定法评估Schiff碱的总抗氧化能力,结果表明所有合成的化合物显示出抗氧化活性。

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