首页> 外文期刊>Inorganica Chimica Acta >Tri-nuclear copper-cadmium complexes of a N2O2-donor ligand with the variation of counter anions: Structural elucidation and theoretical study on inter-molecular interactions
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Tri-nuclear copper-cadmium complexes of a N2O2-donor ligand with the variation of counter anions: Structural elucidation and theoretical study on inter-molecular interactions

机译:N2O2-供体配体的三核铜 - 镉络合物,抗衡阴离子变异:结构阐释与分子间相互作用的理论研究

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Four new tri-nuclear hetero-metallic copper(II)-cadmium(II) complexes [(CuL)(2)CdCl2] (1), [(CuL)(2)CdBr2] (2), [(CuL)(2)CdI2] (3) and [(CuL)(2)Cd(NO3)(2)] (4) have been synthesized using [CuL] as "ligand complex'' (where H2L = N,N'-bis(2-hydroxynaphthyl-methylidene)-1,3-propanediamine) and characterized by elemental analysis, IR, UV-Vis spectroscopy and single crystal X-ray diffraction studies. Crystal structure analyses reveal that all four complexes consist of a tri-nuclear moiety in which two square-pyramidal [CuL] units are bonded to a central Cd (II) ion through double phenoxido bridges. The Cd(II) is in a six-coordinate octahedral environment being bonded additionally to two mutually trans chloride (in 1), bromide (in 2), iodide (in 3) and oxygen atoms of nitrate (in 4) ions. Presence of several non-covalent interactions (i.e. pi center dot center dot center dot pi, C-H center dot center dot center dot O and Cu center dot center dot center dot Cu interactions) has been observed in the crystal packing of all the four molecules that assist the formation of 1D supramolecular assemblies in the solid state. The interactions were investigated by means of high level DFT calculations (PBE0-D3/def2-TZVP) with the help of TURBOMOLE 7.0 program, characterized using Bader's theory of "atoms-inmolecules" (AIM) and rationalized using molecular electrostatic potential (MEP) surface calculations.
机译:四种新的三核异质金属铜(II) - 镉(II)配合物[(CUL)(2)CDCl2](1),[(CUL)(2)CDBR2](2),[(CUL)(2 )CDI2](3)和[(CUL)(2)CD(NO 3)(2)](4)已经使用[CUL]作为“配体络合物”(其中H2L = N,N'-BIS(2 - 羟基萘基 - 甲基 - 甲基 - 甲基 - 丙烷),其特征在于元素分析,IR,UV-Vis光谱和单晶X射线衍射研究。晶体结构分析表明,所有四个复合物都是由三核部分组成的两个方形锥体[CUL]单元键合至镉中央(II)离子通过双phenoxido桥。的镉(II)是在六坐标被附加地键合到两个相互反式氯(1)八面体环境,溴化(在2中),碘化物(3)和硝酸盐(4)离子的氧原子。存在几种非共价相互作用(即PI中心点中心点中心点PI,CH中心点中心点中心点O和CU中心观察到DOT中心点中心点Cu相互作用在所有四个分子的晶体包装中,有助于在固态中形成1D超分子组件。通过高水平DFT计算(PBE0-D3 / DEF2-TZVP)在涡轮机7.0程序的帮助下研究了相互作用,其特征在于使用庞大的“原子 - Inmolecules”(AIM)理论并使用分子静电潜力(MEP)合理化表面计算。

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