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金属离子半径与偶氮染料配合物超分子结构热分解之间的相关性

Correlation between ionic radii of metals and thermal decomposition of supramolecular structure of azodye complexes.

作者信息

El-Sonbati A Z, Diab M A, El-Bindary A A, Eldesoky A M, Morgan Sh M

机构信息

Chemistry Department, Faculty of Science, Damietta University, Damietta, Egypt.

Chemistry Department, Faculty of Science, Damietta University, Damietta, Egypt.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2015 Jan 25;135:774-91. doi: 10.1016/j.saa.2014.07.055. Epub 2014 Aug 1.

Abstract

An interesting azodye heterocyclic ligand of copper(II), cobalt(II), nickel(II) and uranyl(II) complexes have been synthesized by the reaction of metal salts with 5-(2,3-dimethyl-1-phenylpyrazol-5-one azo)-2-thioxo-4-thiazolidinone (HL) yields 1:1 and 1:2 (M:L) complexes depending on the reaction conditions. The elemental analysis, magnetic moments, spectral (UV-Vis, IR, (1)H and (13)C NMR and ESR) and thermal studies were used to characterize the isolated complexes. The molecular structures of the ligand tautomers are optimized theoretically and the quantum chemical parameters are calculated. The IR spectra showed that the ligand (HL) act as monobasic tridentate/neutral bidentate through the (-N=N), enolic (C-O)(-) and/or oxygen keto moiety groups forming a five/six-membered structures. According to intramolecular hydrogen bond leads to increasing of the complexes stability. The molar conductivities show that all the complexes are non-electrolytes. The ESR spectra indicate that the free electron is in dxy orbital. The calculated bonding parameter indicates that in-plane σ-bonding is more covalent than in-plane π-bonding. The coordination geometry is five/six-coordinated trigonal bipyramidal for complex (1) and octahedral for complexes (2-6). The value of covalency factor β1(2) and orbital reduction factor K accounts for the covalent nature of the complexes. The activation thermodynamic parameters are calculated using Coats-Redfern and Horowitz-Metzger methods. The synthesized ligand (HL) and its Cu(II) complexes (1, 2 and 4) are screened for their biological activity against bacterial and fungal species. The ligand (HL) showed antimicrobial activities against Escherichia coli. The ligand (HL) and its Cu(II) complexes (2 and 4) have very high antifungal activity against Penicillium italicum. The inhibitive action of ligand (HL), against the corrosion of C-steel in 2M HCl solution has been investigated using potentiodynamic polarization and electrochemical impedance spectroscopy (EIS).

摘要

通过金属盐与5-(2,3-二甲基-1-苯基吡唑-5-酮偶氮)-2-硫代-4-噻唑烷酮(HL)反应,合成了有趣的铜(II)、钴(II)、镍(II)和铀酰(II)偶氮染料杂环配体配合物,根据反应条件生成1:1和1:2(M:L)配合物。通过元素分析、磁矩、光谱(紫外可见光谱、红外光谱、(1)H和(13)C核磁共振光谱以及电子自旋共振光谱)和热学研究对分离得到的配合物进行表征。从理论上优化了配体互变异构体的分子结构,并计算了量子化学参数。红外光谱表明,配体(HL)通过(-N=N)、烯醇式(C-O)(-)和/或氧酮部分基团作为一元三齿/中性双齿配体,形成五元/六元结构。分子内氢键导致配合物稳定性增加。摩尔电导率表明所有配合物均为非电解质。电子自旋共振光谱表明自由电子位于dxy轨道。计算得到的键合参数表明面内σ键比面内π键更具共价性。配合物(1)的配位几何结构为五/六配位三角双锥,配合物(2-6)为八面体。共价因子β1(2)和轨道还原因子K的值说明了配合物的共价性质。使用Coats-Redfern和Horowitz-Metzger方法计算了活化热力学参数。对合成的配体(HL)及其铜(II)配合物(1、2和4)针对细菌和真菌物种的生物活性进行了筛选。配体(HL)对大肠杆菌表现出抗菌活性。配体(HL)及其铜(II)配合物(2和4)对意大利青霉具有非常高的抗真菌活性。使用动电位极化和电化学阻抗谱(EIS)研究了配体(HL)对C钢在2M HCl溶液中的腐蚀抑制作用。

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