Department of Chemistry, Faculty of Science, Mansoura University, Egypt.
Spectrochim Acta A Mol Biomol Spectrosc. 2011 Jan;78(1):196-204. doi: 10.1016/j.saa.2010.09.021. Epub 2010 Sep 18.
This work represents the elaborated investigation for the ligational behavior of the albendazole ligand through its coordination with, Cu(II), Mn(II), Ni(II), Co(II) and Cr(III) ions. Elemental analysis, molar conductance, magnetic moment, spectral studies (IR, UV-Vis and ESR) and thermogravimetric analysis (TG and DTG) have been used to characterize the isolated complexes. A deliberate comparison for the IR spectra reveals that the ligand coordinated with all mentioned metal ions by the same manner as a neutral bidentate through carbonyl of ester moiety and NH groups. The proposed chelation form for such complexes is expected through out the preparation conditions in a relatively acidic medium. The powder XRD study reflects the amorphous nature for the investigated complexes except Mn(II). The conductivity measurements reflect the non-electrolytic feature for all complexes. In comparing with the constants for the magnetic measurements as well as the electronic spectral data, the octahedral structure was proposed strongly for Cr(III) and Ni(II), the tetrahedral for Co(II) and Mn(II) complexes but the square-pyramidal for the Cu(II) one. The thermogravimetric analysis confirms the presence or absence of water molecules by any type of attachments. Also, the kinetic parameters are estimated from DTG and TG curves. ESR spectrum data for Cu(II) solid complex confirms the square-pyramidal state is the most fitted one for the coordinated structure. The albendazole ligand and its complexes are biologically investigated against two bacteria as well as their effective effect on degradation of calf thymus DNA.
这项工作代表了对阿苯达唑配体的配位行为的详细研究,其通过与 Cu(II)、Mn(II)、Ni(II)、Co(II)和 Cr(III)离子配位来实现。元素分析、摩尔电导率、磁矩、光谱研究(IR、UV-Vis 和 ESR)和热重分析(TG 和 DTG)用于表征分离的配合物。对 IR 光谱的仔细比较表明,配体通过酯基和 NH 基团的羰基以相同的方式与所有提到的金属离子以中性双齿配位。这种配合物的螯合形式预计在相对酸性的介质中通过整个制备条件存在。粉末 XRD 研究反映了所研究的配合物除 Mn(II)外均为无定形性质。电导率测量反映了所有配合物的非电解质特征。与磁性测量常数以及电子光谱数据相比,强烈提出 Cr(III)和 Ni(II)的八面体结构,Co(II)和 Mn(II)的四面体结构,但 Cu(II)的正方形金字塔结构。热重分析通过任何类型的附着来确认水分子的存在或不存在。此外,还从 DTG 和 TG 曲线估计了动力学参数。Cu(II)固体配合物的 ESR 谱数据证实了正方形金字塔状态是最适合配位结构的状态。阿苯达唑配体及其配合物在两种细菌以及它们对小牛胸腺 DNA 降解的有效作用方面进行了生物研究。