Synthesis, physicochemical characterisation and DNA binding study of a novel azo Schiff base Ni(II) complex

Uttam Kumar Singha, Sudarshan Pradhan, Dipu Kumar Mishra, P. Gurung, Anmol Chettri, B. Sinha
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Abstract

The azo Schiff base ligand was synthesised, along with its Ni(II) complex, by diazotisation of salicylaldehyde with 4-nitroaniline in accordance with the accepted literature approach. Using a variety of spectroscopic techniques, the resulting complex is analysed both quantitatively and qualitatively (Elemental analysis, FT-IR spectroscopy, UV-VIS spectroscopy, 1H NMR, etc.). Spectral measurements of the complex revealed a mole ratio of 1:1. The non-electrolytic nature of the complex is confirmed by molar conductance investigation. The unique azo compound had a tetrahedral shape as a result of the tetra coordination of two phenolic oxygen and two imine nitrogen. The ability of the metal complexes to bind DNA was examined using absorption spectroscopy, fluorescence spectroscopy, viscosity tests, and thermal denaturation methods. Experimental research suggests that complexes bind to DNA through intercalation.
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一种新型偶氮Schiff碱Ni(II)配合物的合成、理化性质及DNA结合研究
根据公认的文献方法,通过水杨醛与4-硝基苯胺的重氮化,合成了偶氮席夫碱配体及其Ni(II)络合物。使用各种光谱技术,对所得络合物进行定量和定性分析(元素分析、FT-IR光谱、UV-VIS光谱、1H NMR等)。络合物的光谱测量显示摩尔比为1:1。摩尔电导研究证实了该配合物的非电解性质。由于两个酚氧和两个亚胺氮的四配位,这种独特的偶氮化合物具有四面体形状。使用吸收光谱、荧光光谱、粘度测试和热变性方法检查金属络合物结合DNA的能力。实验研究表明,复合物通过嵌入与DNA结合。
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