Synthesis, Spectral Correlations and Biological Evaluation of Some Aryl (E)-N- Benzylidene-3-nitrobenzenamines

S. P. Sakthinathan, R. Suresh, V. Mala, K. Sathiyamoorthi, D. Kamalakkannan, K. Ranganathan, S. J. Joseph, G. Vanangamudi, G. Thirunarayanan
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引用次数: 2

Abstract

Assessment of substituent effects in a series of aryl imines through spectral correlation has been studied since they have close pharmacological association with diverse pharmacological properties. A series of aryl imines have been synthesized from 3-Nitro aniline with various substituted benzaldehydes were refluxed for 4h with 20 mL of absolute ethanol. The purity of all imines has been checked using their physical constants and spectral data. The UV λmax(nm), infrared νC=N(cm -1 ), NMR δ(ppm) of CH=N and C=N spectral data have been correlated with Hammett substituent constants and F and R parameters using single and multi-linear regression analysis. From the results of statistical analysis, the effect of substituents on the above spectral data has been studied. The single parameter correlation with few Hammett constants and F and R parameters gave satisfactory correlation coefficients whereas all multiple correlations gave satisfactory correlation coefficients with Resonance, Field and Swain-Lupton's parameters. The antimicrobial activities of all imines have been studied using Bauer-Kirby method. Aryl imine compounds with 2-Cl, 4-Br and 2-OCH3 substituents have shown good antibacterial activity against S.aureus and those with 3-NO2 and 4-NO2 substituents have shown good antifungal activity against T.viridi.,
一些芳基(E)- n -苄基-3-硝基苯胺的合成、光谱相关性及生物学评价
由于一系列芳基亚胺具有密切的药理学关联和不同的药理学性质,因此研究了用光谱相关性评价取代基效应的方法。以3-硝基苯胺为原料,用不同取代的苯甲醛与20 mL无水乙醇回流4h,合成了一系列芳基亚胺。所有亚胺的纯度都用它们的物理常数和光谱数据进行了检查。用单线性和多元线性回归分析了CH=N和C=N光谱数据的紫外λmax(nm)、红外νC=N(cm -1)、NMR δ(ppm)与Hammett取代基常数和F、R参数的关系。从统计分析结果出发,研究了取代基对上述光谱数据的影响。Hammett常数和F、R参数较少的单参数相关得到满意的相关系数,而共振、场和Swain-Lupton参数的多参数相关得到满意的相关系数。采用Bauer-Kirby法研究了亚胺类化合物的抑菌活性。具有2-Cl、4-Br和2-OCH3取代基的芳基亚胺化合物对金黄色葡萄球菌具有良好的抑菌活性,具有3-NO2和4-NO2取代基的芳基亚胺化合物对金黄色葡萄球菌具有良好的抑菌活性。
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