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首页> 外文期刊>Journal of Molecular Structure >Synthesis, crystal structures and theoretical studies of Zinc(II) coordination compounds with 4-trifluoromethylphenyl) imino-methyl]pyridine bidentate Schiff base ligand
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Synthesis, crystal structures and theoretical studies of Zinc(II) coordination compounds with 4-trifluoromethylphenyl) imino-methyl]pyridine bidentate Schiff base ligand

机译:用4-三氟甲基苯基锌(II)配位化合物的合成,晶体结构和理论研究)咪喹 - 甲基吡啶二齿Schiff碱配体

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摘要

[Zn(dip)(Br)(2)] (1) and [Zn-2(dip)(2)Cl-4] (2) zinc(II) coordination compounds were synthesized using 4-trifluoromethylphenyl)imino-methyl]pyridine (dip) bidentate Schiff base ligand and ZnBr2 and ZnCl2 salts. In structure 1, zinc(II) ion exhibits a tetrahedral arrangement while adopting a ZnN2Cl3 trigonal bipyramidal geometry in structure 2. Moreover, in structures 1 and 2, the neutral molecules form a 1D chain structure through the C-H center dot center dot center dot F hydrogen bonds. Complex 1 is a monomeric structure while complex 2 has a dimeric structure. Coordination compounds 1 and 2 have been characterized by infrared spectroscopy, elemental analysis and single crystal X-ray diffraction. Density Functional Theory (DFT) calculations at the B3LYP level of theory have been carried out to investigate three types of reactions between ZnCl2 and ZnBr2 metal salts and ligand L in both gas and solution phases. The optimized geometrical parameters of the complexes were evaluated using SDD, CEP-121G, and LANL2DZ basis sets. The gas phase calculations show that the binuclear Zn2L2X4 (Zn2L2Cl4 and Zn2L2Br4) complexes are more stable than mononuclear ZnLX2 (ZnLCl2 and ZnLBr2) and ZnL22+ complexes. However, the solution studies indicate that the formation of Zn2L2Cl4 and ZnLBr2 complexes is energetically more favorable compared with the other complexes. (C) 2020 Elsevier B.V. All rights reserved.
机译:以4-三氟甲基苯基亚氨基甲基吡啶(dip)双齿席夫碱配体和ZnBr2和ZnCl2盐为原料,合成了[Zn(dip)(Br)(2)](1)和[Zn-2(dip)(2)Cl-4](2)Zn(II)配合物。在结构1中,锌(II)离子呈现四面体排列,而在结构2中采用ZnN2Cl3三角双锥构型。此外,在结构1和2中,中性分子通过C-H中心点F氢键形成一维链结构。配合物1为单体结构,而配合物2为二聚体结构。通过红外光谱、元素分析和单晶X射线衍射对配合物1和2进行了表征。在B3LYP理论水平上进行了密度泛函理论(DFT)计算,研究了ZnCl2和ZnBr2金属盐与配体L在气相和溶液相中的三种反应。使用SDD、CEP-121G和LANL2DZ基组评估了配合物的优化几何参数。气相计算表明,双核Zn2L2X4(Zn2L2Cl4和Zn2L2Br4)配合物比单核ZnLX2(ZnLCl2和ZnLBr2)和ZnL22+配合物更稳定。然而,溶液研究表明,与其他配合物相比,Zn2L2Cl4和ZnLBr2配合物的形成在能量上更有利。(C) 2020爱思唯尔B.V.版权所有。

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