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首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Transition metal complexes with thiosemicarbazide-based ligands. Part XLI. Two crystal structures of cobalt(III) complexes with salicylaldehyde S-methylisothiosemicarbazone and theoretical study on orientations of coordinated pyridines
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Transition metal complexes with thiosemicarbazide-based ligands. Part XLI. Two crystal structures of cobalt(III) complexes with salicylaldehyde S-methylisothiosemicarbazone and theoretical study on orientations of coordinated pyridines

机译:过渡金属配合物与基于硫代氨基脲的配体。第XLI部分。钴(III)与水杨醛S-甲基异硫半卡巴a配合物的两种晶体结构和配位吡啶取向的理论研究

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摘要

Two compounds, [Co~(III)(L)(py)_3][Co~(II)(py)Cl_3]·EtOH and [Co~(III)(L)(py)_3]I_3 (H_2L = salicylaldehyde S-methylisothiosemicarbazone, py = pyridine), were synthesized and the crystal structures determined by single-crystal X-ray diffraction. In both structures the geometries of the cation are very similar to a thiosemicarbazide-based ligand coordinated in the mer configuration. The axial pyridines are in mutual perpendicular orientation, the angles between the planes being 85.3(2) and 82.5(2) deg. The plane of the equatorial pyridine is tilted with repect to the equatorial plane by about 40 deg. The orientations of he pyridines were studied in model systems by quantum chemistry calculations. It was shown that the interactions between axial and equatorial pyridines are responsible for the orientation of pyridines in the complex cation; consequently, there are very similar geometries of the complex cation in both crystal structures. The compounds were also characterized by elemental analysis, molar conductivity, magnetic susceptibility and electronic absorption spectra.
机译:两种化合物,[Co〜(III)(L)(py)_3] [Co〜(II)(py)Cl_3]·EtOH和[Co〜(III)(L)(py)_3] I_3(H_2L =水杨醛合成了S-甲基异硫半碳酮(py =吡啶),并通过单晶X射线衍射确定了晶体结构。在这两种结构中,阳离子的几何形状都非常相似,并以硫醇缩氨基脲为基础在配体中配位。轴向吡啶处于相互垂直的方向,这些平面之间的角度为85.3(2)和82.5(2)度。赤道吡啶平面相对于赤道平面倾斜约40度。通过量子化学计算在模型系统中研究了吡啶的方向。结果表明,轴向和赤道吡啶之间的相互作用是吡啶在复合阳离子中的取向的原因。因此,两种晶体结构中的复合阳离子的几何形状都非常相似。还通过元素分析,摩尔电导率,磁化率和电子吸收光谱对化合物进行了表征。

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