Chemistry Department, Faculty of Science, Tanta University, Tanta, Egypt.
Chemistry Department, Faculty of Science, Tanta University, Tanta, Egypt.
Spectrochim Acta A Mol Biomol Spectrosc. 2014;121:180-7. doi: 10.1016/j.saa.2013.09.070. Epub 2013 Oct 30.
The azodye ligand (HL(1)) was synthesized from the coupling of sulfaguanidine diazonium salt with 2,4-dihydroxy-benzaldehyde while the two ligands, HL(2) and HL(3), were prepared by the coupling of sulfadiazine diazonium salt with salicylaldehyde (HL(2)) and 2,4-dihydroxy-benzaldehyde (HL(3)). The prepared ligands were characterized by elemental analysis, IR, (1)H NMR and mass spectra. Cu(II), Co(II) and Ni(II) complexes of the prepared ligands have been synthesized and characterized by various spectroscopic techniques like IR, UV-Visible as well as magnetic and thermal (TG and DTA) measurements. It was found that all the ligands behave as a monobasic bidentate which coordinated to the metal center through the azo nitrogen and α-hydroxy oxygen atoms in the case of HL(1) and HL(3). HL(2) coordinated to the metal center through sulfonamide oxygen and pyrimidine nitrogen. The applications of the prepared complexes in the oxidative degradation of indigo carmine dye exhibited good catalytic activity in the presence of H2O2 as an oxidant. The reactions followed first-order kinetics and the rate constants were determined. The degradation reaction involved the catalytic action of the azo-dye complexes toward H2O2 decomposition, which can lead to the generation of HO radicals as a highly efficient oxidant attacking the target dye. The detailed kinetic studies and the mechanism of these catalytic reactions are under consideration in our group.
偶氮染料配体 (HL(1)) 是由磺胺脒重氮盐与 2,4-二羟基苯甲醛偶联合成的,而 HL(2) 和 HL(3) 两种配体则是由磺胺嘧啶重氮盐与水杨醛 (HL(2)) 和 2,4-二羟基苯甲醛 (HL(3)) 偶联合成的。所制备的配体通过元素分析、IR、(1)H NMR 和质谱进行了表征。合成了所制备的配体的 Cu(II)、Co(II) 和 Ni(II) 配合物,并通过各种光谱技术(如 IR、UV-可见以及磁性和热(TG 和 DTA)测量)进行了表征。结果发现,所有配体均表现为单齿双齿配体,通过偶氮氮原子和 HL(1) 和 HL(3) 中的α-羟基氧原子与金属中心配位。HL(2) 通过磺酰胺氧原子和嘧啶氮原子与金属中心配位。所制备的配合物在 H2O2 作为氧化剂存在下,在靛蓝胭脂红染料的氧化降解中表现出良好的催化活性。反应遵循一级动力学,确定了速率常数。降解反应涉及偶氮染料配合物对 H2O2 分解的催化作用,这可以导致 HO 自由基的生成,作为一种高效的氧化剂攻击目标染料。我们小组正在考虑对这些催化反应进行详细的动力学研究和机制研究。