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首页> 外文期刊>Acta Chimica Slovenica >Optical Response of Two Azo Ligands Containing Salicyaldimine-based Ligand as Side Chains Towards Some Divalent Metal Ions and Their Antioxidant Behavior
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Optical Response of Two Azo Ligands Containing Salicyaldimine-based Ligand as Side Chains Towards Some Divalent Metal Ions and Their Antioxidant Behavior

机译:两个偶氮配体的光学响应含有Salicyaldimine基配体作为侧链朝向某种二价金属离子及其抗氧化行为

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According to applicability of azo-azomethine compounds in chemical sensors and biological activities, two receptors: 1,2-[1-(3-imino-4-hydroxophenylazobenzene)]-4-nitrobenzene (1) and 1,2-[1-(3-imino-4-hydroxophenylazo-4-nitrobenzene)]-4-nitrobenzene (2) are investigated for detection of nickel, cobalt, copper, lead, mercury, zinc and cadmium divalent metal ions by UV-vis spectroscopy. With the addition of all metal ions to the DMSO solution of ligands, the peaks at 558 and 549 nm increase in intensity with hypsochromic or bathochromic shifts except Zn2+ ions and 2, while the peaks at 388 and 391 nm dramatically decrease in intensity. In both cases, the largest shift is observed after addition of copper ions. In solution, both receptors produce a cation blue shift from 558 and 549 nm to 503 and 497 nm with the sensible color change of solutions from purple-red to orange. Therefore, both compounds can highly recognize copper ions in DMSO solution. In the next step, Benesi-Hildebrand plot and Job's method are used for determination of binding constant (K-a) and stoichiometry of formed complexes, respectively. Also, the investigation of solvent effect in the UV-vis spectra of ligands shows that the generation of hydrazine and enaminone tautomers increases in highly polar solvents such as DMF and DMSO. Finally, the antioxidant activity of ligands is studied by DPPH method. The results show that NO2 withdrawing groups in 1,2-[1-(3-imino-4-hydroxophenylazo-4-nitrobenzene)]-4-nitrobenzene probably affect ke-to-enol equilibrium. As a result, this ligand reduces free radicals to non-reactive species by donating hydrogen.
机译:根据化学传感器和生物活性在化学传感器和生物活性中的适用性,两个受体:1,2- [1-(3-亚氨基-4-羟基苯基苯苯基苯)] - 4-硝基苯(1)和1,2- [1- (3-亚氨基-4-羟基苯基氧氮杂-4-硝基苯)] - 通过UV-VIS光谱研究通过UV-Vis光谱检测镍,钴,铜,铅,汞,锌和镉二价金属离子的镍。通过向配体的DMSO溶液中加入所有金属离子,除Zn2 +离子和2外,558和549nm的峰值在558和549nm的强度增加,而388和391nm处的峰值急剧下降。在这两种情况下,在加入铜离子后观察到最大移位。在溶液中,两个受体产生558和549nm至503和497nm的阳离子蓝色偏移,并从紫红色到橙色的溶液的显色变化。因此,两种化合物可以高度识别DMSO溶液中的铜离子。在下一步中,Benesi-Hildebrand图和作业的方法分别用于测定形成的复合物的结合常数(K-A)和化学计量。此外,配体UV-VIS光谱中溶剂效应的研究表明,肼和烯胺互抗切征的产生在高极性溶剂如DMF和DMSO中增加。最后,通过DPPH方法研究了配体的抗氧化活性。结果表明,1,2- [1-(3-亚氨基-4-羟基苯基 - 4-硝基苯)] - 4-硝基苯中的NO 2抽出基团可能影响Ke-en-enol平衡。结果,该配体通过赋予氢来减少对非反应性物质的自由基。

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