首页> 外文期刊>Structural Chemistry >Structural diversity of isothiocyanato Cd(II) and Zn(II) Girard's T hydrazone complexes in solution and solid state: effect of H-bonding on coordination number and supramolecular assembly of Cd(II) complex in solid state
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Structural diversity of isothiocyanato Cd(II) and Zn(II) Girard's T hydrazone complexes in solution and solid state: effect of H-bonding on coordination number and supramolecular assembly of Cd(II) complex in solid state

机译:异硫氰酸酯的结构多样性和Zn(II)溶液的溶液和固态的腙络合物:H键合在固态中Cd(II)复合物的配位数和超分子组装的影响

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摘要

The isothiocyanato Zn(II) complex (1) and mixed isothiocyanato/thiocyanato Cd(II) complex (2) with the condensation product of 2-acetylpyridine and trimethylammoniumacetohydrazide chloride (Girard's T reagent) (HLCl) were investigated both experimentally and theoretically. The crystal structures of both complexes showed tridentate N2O coordination of hydrazine ligand. In complex 1 square-pyramidal coordination surrounding of Zn(II) consists of deprotonated hydrazone ligand and two isothiocyanato ligands, while in octahedral Cd(II) complex ligand is coordinated without deprotonation as a positively charged species and coordination geometry is completed with two N-coordinated and one S-coordinated NCS- anions. NMR spectroscopy and molar conductivity results for Cd(II) and Zn(II) complexes indicated their instability in solution. DFT calculations were performed to explain coordination preference and stability of complexes 1 and 2 in solid state and in solution. The obtained Cd(II) complex is the first reported mononuclear pseudohalide/halide Cd(II) complex with quinoline-/pyridine-based hydrazone ligands possessing octahedral geometry in solid state. In this complex, H-bonding has significant impact on coordination number and supramolecular assembly in solid state.
机译:在实验和理论上,在实验和理论上研究了异硫氰酸盐(1)和混合异硫氰酸盐/硫氰酸盐(2),其具有2-乙酰吡啶和三甲基铵酰肼酰肼氯化物(Girard的T试剂)(HLCL)的缩合产物。两种配合物的晶体结构显示了肼配体的三叉N2O配位。在综合的1平方锥形术间协调Zn(II)周围由反质腙配体和两种异硫氰酸盐配体组成,而在八面体CD(II)中,复合配体在不反质化的情况下,作为带正电荷的物种和配位几何形状,并用两个N-完成配位。协调和一个S协调的NCSIONS。 CD(II)和Zn(II)复合物的NMR光谱和摩尔电导率结果表明它们在溶液中的不稳定性。进行DFT计算以解释固态和溶液中配合物1和2的配位偏好和稳定性。所得CD(II)复合物是第一个报道的单核假织物/卤化物CD(II)配合物,其具有具有固态的八面体几何形状的喹啉/吡啶基腙配体。在该综合体中,H键对固态的配位数和超分子组装具有显着影响。

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