首页> 外文期刊>Journal of Molecular Structure >Novel benzildihydrazone based Schiff bases: Syntheses, characterization, thermal properties, theoretical DFT calculations and biological activity studies
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Novel benzildihydrazone based Schiff bases: Syntheses, characterization, thermal properties, theoretical DFT calculations and biological activity studies

机译:基于新的苯并林基脱索席克群:合成,表征,热性质,理论DFT计算和生物活性研究

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摘要

A novel series of benzildihydrazone derived Schiff base compounds having electron-accepting and donor-donating appendices were synthesized. A combined experimental and theoretical analysis was conducted to elucidate all the characteristic and structural features of the synthesized molecules. The experimental characterizations were performed by using FT-IR, H-1/C-13 NMR, mass spectroscopic techniques, and X-ray diffraction methods. The thermal stabilities of the molecules were evaluated by thermal gravimetric analysis (TGA) and all them were found to be stable above 300 degrees C. To support the experimental, structural, and spectroscopic data of the dyes, the quantum chemical parameters were obtained within the density functional theory (DFT) calculations. In addition, some properties based on the HOMO and LUMO energies and the temperature dependence of some thermodynamic quantities (i.e. entropy, heat capacity, and enthalpy) were also studied. According to the antimicrobial activity evaluation results, compound 1f has been found to be potentially effective in suppressing microbial growth of bacteria with variable potency. The DNA cleavage activity of the compounds was analysed by gel electrophoresis assay. The results showed that the compounds have DNA cleaving activity. (C) 2019 Elsevier B.V. All rights reserved.
机译:合成了一种新的系列苯并的苯并肼衍生的席夫碱化合物,具有电子接受和供体捐赠的附录。进行了组合的实验和理论分析以阐明合成分子的所有特征和结构特征。通过使用FT-IR,H-1 / C-13 NMR,质谱技术和X射线衍射方法进行实验表征。通过热重分析(TGA)评估分子的热稳定性,并且发现它们的所有稳定性稳定在300摄氏度上方。为了支持染料的实验,结构和光谱数据,在其中获得量子化学参数密度泛函理论(DFT)计算。此外,还研究了一些基于HOMO和LUMO能量的特性以及一些热力学量的温度依赖性(即熵,热容量和焓)。根据抗微生物活性评价结果,已发现化合物1F可能有效地抑制具有可变效力的细菌的微生物生长。通过凝胶电泳测定分析化合物的DNA切割活性。结果表明,化合物具有DNA切割活性。 (c)2019 Elsevier B.v.保留所有权利。

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