Chemistry Department, Faculty of Science, Mansoura University, Mansoura, Egypt.
Spectrochim Acta A Mol Biomol Spectrosc. 2011 Oct 15;81(1):28-34. doi: 10.1016/j.saa.2011.05.028. Epub 2011 Jun 12.
Schiff base complexes of Cu(II), Ni(II) and Zn(II) with the o-hydroxyacetophenone [N-(3-hydroxy-2-naphthoyl)] hydrazone (H(2)o-HAHNH) containing N and O donor sites have been synthesized. Both ligand and its metal complexes were characterized by different physicochemical methods, elemental analysis, molar conductivity ((1)H NMR, (13)C NMR, IR, UV-visible, ESR, MS spectra) and also thermal analysis (TG and DTG) techniques. The discussion of the outcome data of the prepared complexes indicates that the ligand behave as a bidentate and/or tridentate ligand. The electronic spectra of the complexes as well as their magnetic moments suggest octahedral geometries for all isolated complexes. The room temperature solid state ESR spectrum of the Cu(II) complex shows d(x2-y2) as a ground state, suggesting tetragonally distorted octahedral geometry around Cu(II) centre. The molar conductance measurements proved that the complexes are non-electrolytes. The kinetic thermodynamic parameters such as: E(#), ΔH(#), ΔG(#), ΔS(#) are calculated from the DTG curves, for the [Ni(H(O)-HAHNH)(2)] and [Zn(H(2O)-HAHNH)(OAc)(2)]·H(2)O complexes using the Coats-Redfern equation. Also, the antimicrobial properties of all compounds were studied using a wide spectrum of bacterial and fungal strains. The [Cu(Ho-HAHNH)(OAc)(H(2)O)(2)] complex was the most active against all strains, including Aspergillus sp., Stemphylium sp. and Trichoderma sp. Fungi; E. coli and Clostridium sp. Bacteria.
席夫碱配合物的 Cu(II)、Ni(II) 和 Zn(II) 与邻 - 羟基苯乙酮[N-(3- 羟基-2- 萘甲酰基)]腙(H(2)o-HAHNH)含有 N 和 O 供体位点已被合成。配体及其金属配合物均通过不同的物理化学方法、元素分析、摩尔电导率((1)H NMR、(13)C NMR、IR、UV-可见、ESR、MS 谱)以及热分析(TG 和 DTG)技术进行了表征。对配合物的实验数据的讨论表明,配体表现为双齿或三齿配体。配合物的电子光谱及其磁矩表明所有分离的配合物均具有八面体几何构型。Cu(II)配合物的室温固态 ESR 光谱表明 d(x2-y2) 为基态,表明 Cu(II)中心周围存在四面体畸变的八面体几何构型。摩尔电导率测量证明了配合物是非电解质。动力学热力学参数,如:E(#)、ΔH(#)、ΔG(#)、ΔS(#)是根据 DTG 曲线,使用 Coats-Redfern 方程,从[Ni(H(O)-HAHNH)(2)]和[Zn(H(2O)-HAHNH)(OAc)(2)]·H(2)O 配合物中计算得出的。此外,还研究了所有化合物的抗菌性能,使用了广泛的细菌和真菌菌株。[Cu(Ho-HAHNH)(OAc)(H(2)O)(2)]配合物对所有菌株,包括曲霉属、茎点霉属和木霉属真菌;大肠杆菌和梭菌属细菌都具有最高的活性。