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首页> 外文期刊>Applied Organometallic Chemistry >Single-armed salamo-like dioxime and its multinuclear Cu (II), Zn (II) and Cd (II) complexes: Syntheses, structural characterizations, Hirshfeld analyses and fluorescence properties
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Single-armed salamo-like dioxime and its multinuclear Cu (II), Zn (II) and Cd (II) complexes: Syntheses, structural characterizations, Hirshfeld analyses and fluorescence properties

机译:单武装蝾螈的二恶英及其多核Cu(II),Zn(II)和CD(II)配合物:合成,结构表征,血频分析和荧光性能

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摘要

Three multinuclear Cu (II), Zn (II) and Cd (II) complexes, [Cu-2(L)(mu-OAc)]center dot CHCl2 (1), [Zn-2(L)(mu-OAc)(H2O)]center dot 3CHCl(3) (2) and [{Cd-2(L)(OAc)(CH3CH2OH)}(2)]center dot 2CH(3)CH(2)OH (3) with a single-armed salamo-like dioxime ligand H3L have been synthesized, and characterized by FT-IR, UV-vis, X-ray crystallography and Hirshfeld surfaces analyses. The ligand H3L has a linear structure and C-H center dot center dot center dot pi interactions between the two molecules. The complex 1 is a dinuclear Cu (II) complex, Cu1 and Cu2 are all five-coordinate possessing distorted square pyramidal geometries. The complex 2 also forms a dinuclear Zn (II) structure, and Zn1 and Zn2 are all five-coordinate bearing distorted trigonal bipyramidal geometries. The complex 3 is a symmetrical tetranuclear Cd (II) complex, and Cd1 is a hexa-coordinate having octahedral configuration and Cd2 is hepta-coordinate with a pentagonal bipyramidal geometry, and it has pi center dot center dot center dot pi interactions inside the molecule. In addition, fluorescence properties of the ligand and its complexes 1-3 have also been discussed.
机译:三种多核Cu(II),Zn(II)和Cd(II)配合物,[Cu-2(L)(MU-OAC)]中心点CHCL2(1),[Zn-2(L)(Mu-OAC) (H2O)]中央点3CL(3)(2)和[{CD-2(L)(OAC)(OAC)(CH 3 CH 2 OH)}(2)]中心点2CH(3)CH(2)OH(3)用单一已经合成了制动的蝾螈样DiOxime配体H3L,其特征在于FT-IR,UV-Vis,X射线晶体学和Hirshfeld表面分析。配体H3L在两个分子之间具有线性结构和C-H中心点中心点中心点PI相互作用。复合物1是硫颗铜(II)复合物,Cu1和Cu2是具有扭曲方形金字塔形几何形状的五个坐标。复合物2还形成了碳核Zn(II)结构,Zn1和Zn2是所有五个坐标轴承失真的三角形双滤网几何形状。复合物3是对称四核CD(II)复合物,CD1是具有八面体构型构型的六曲坐标,CD2是与五角形双筛网几何形状的庚氏坐标,并且在分子内具有PI中心点中心点中心点PI PI相互作用。此外,还讨论了配体的荧光性质及其复合物1-3。

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