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一种新型纳米结构锌配合物的合成、光谱分析、晶体结构、Hirshfeld 表面分析、抗菌/抗癌、热行为及作为 ZnO 纳米结构前体的应用。

Some new nanostructure zinc complex: Synthesis, spectral analyses, crystal structure, Hirshfeld surface analyses, antimicrobial/anticancer, thermal behavior and usage as precursor for ZnO nanostructure.

机构信息

Department of Chemistry, Yasouj University, Yasouj 7591874831, Iran.

Department of Chemistry, Yasouj University, Yasouj 7591874831, Iran.

出版信息

Mater Sci Eng C Mater Biol Appl. 2020 May;110:110642. doi: 10.1016/j.msec.2020.110642. Epub 2020 Feb 6.

Abstract

In this work, a new tridentate ligand, its some novel zinc halide/pseudohalide complexes and their antimicrobial and cytotoxic effects of them are described. Characterization data of these compounds have been achieved via several physical and micro analytical techniques. As typical one, X-ray crystal structure analysis of zinc azide complex was run showing zinc center is penta-coordinated by three nitrogen atoms from Schiff base ligand and two terminal azide nitrogen atoms as a distorted square pyramidal geometry. Hirshfeld surfaces analysis clears the important role of interactions related to azide groups (NH⋯N and CH⋯N hydrogen bonds) in the stabilization of its supramolecular structure. According to data obtained from thermal analysis (TG/DTG/DTA), all complexes are decomposed at four or more thermal stages below 1000 °C. Moreover antimicrobial activities of the compounds were screened against some gram positive and gram negative bacteria. Furthermore anticancer activities of the complexes were studied against MDA-MB468 and k562 as two cancer cell lines. In final, three zinc complexes were also synthesized in nano scale by sonochemical method and one of them was utilized as the precursor for preparation of nanostructure ZnO confirmed by XRD pattern and SEM image.

摘要

在这项工作中,描述了一种新的三齿配体、其一些新型锌卤化物/拟卤化物配合物及其抗菌和细胞毒性作用。这些化合物的表征数据是通过多种物理和微观分析技术获得的。以锌叠氮化物配合物为例,进行了 X 射线晶体结构分析,结果表明锌中心被来自希夫碱配体的三个氮原子和两个末端叠氮氮原子五配位,形成扭曲的四方锥几何形状。希夫菲尔德表面分析清楚地表明了与叠氮基团(NH⋯N 和 CH⋯N 氢键)相关的相互作用在其超分子结构稳定中的重要作用。根据热分析(TG/DTG/DTA)获得的数据,所有配合物在低于 1000°C 的四个或更多热阶段分解。此外,还研究了这些化合物对 MDA-MB468 和 k562 两种癌细胞系的抗癌活性。最后,还通过超声化学法在纳米尺度上合成了三种锌配合物,其中一种被用作制备纳米结构 ZnO 的前体,通过 XRD 图谱和 SEM 图像得到证实。

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