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首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >X-ray characterization, spectroscopic, DFT calculations and Hirshfeld surface analysis of two 3-D supramolecular mononuclear zinc(II) and trinuclear copper(II) complexes
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X-ray characterization, spectroscopic, DFT calculations and Hirshfeld surface analysis of two 3-D supramolecular mononuclear zinc(II) and trinuclear copper(II) complexes

机译:X射线表征,光谱,DFT计算和两种3-D超分子单核锌(II)和三核铜(II)复合物的表面分析

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Two three-dimensional mononuclear zinc(II) and trinuclear copper(II) complexes, [Zn(L-2)(2)]2CH(3)OH (1) and [Cu(L-2)](3)CH3OH (2) (HL2 = 1-(2-{[(E)-3-bromo-5-chloro-2-hydroxybenzylidene]amino}phenyl)ethanone oxime), were synthesized via complexation of metal salts with based ligand HL1 (2-(3-bromo-5-chloro-2-hydroxyphenyl)-4-methyl-1,2-dihydroquinazoline 3-oxide, H is the deprotonatable hydrogen) originally. FT-IR, UVVis and fluorescence spectroscopic data of both complexes were compared with the ligand HL1. Both complexes were characterized by X-ray single-crystal diffraction and reveal that 1 has 2:1 whereas 2 has 1:1 ligand-to-metal ratio. In the crystal structures, both complexes form an infinite 1-D chain-like and 2-D, 3-D supramolecular frameworks. Moreover, antimicrobial activity of 2 was also studied. Density functional theory (DFT) calculations were carried out to ascertain the optimum geometry structure of two complexes, is devoted to the analysis of the interesting supramolecular assemblies in the solid state of the structures. In addition, the noncovalent interactions among complexes have been also analyzed using Hirshfeld surface analysis. (C) 2018 Elsevier Ltd. All rights reserved.
机译:两种三维单核锌(II)和三核铜(II)配合物,[Zn(L-2)(2)] 2CH(3)OH(1)和[Cu(L-2)](3)CH 3 OH( 2)(HL 2 = 1-(2 - {[(E)-3-溴-5-氯-2-羟基苄基二苯基苄基)乙醇肟)通过络合的基于配体HL1(2- (3-溴-5-氯-2-羟基苯基)-4-甲基-1,2-二氢喹唑啉,最初是可去质子化的氢。将两个配合物的FT-IR,UVVI和荧光光谱数据与配体HL1进行比较。两种复合物的特征在于X射线单晶衍射,并揭示1,而2具有1:1韧带 - 金属比。在晶体结构中,两个配合物形成无限的1-D链和2-D,3-D超分子框架。此外,还研究了2的抗微生物活性。进行密度函数理论(DFT)计算以确定两个复合物的最佳几何结构,致专用于在结构的固态中的有趣超分子组件的分析。此外,还使用HIRSHFELD表面分析分析了复合物之间的非共价相互作用。 (c)2018年elestvier有限公司保留所有权利。

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