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首页> 外文期刊>Journal of the Chemical Society, Dalton Transactions. Inorganic Chemistry >Diorganotin(IV) complexes of imidazole-2-carbaldehyde thiosemicarbazone (H(2)ImTSC). The crystal and molecular structures of the 'free' ligand and of [SnMe2(ImTSC)]
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Diorganotin(IV) complexes of imidazole-2-carbaldehyde thiosemicarbazone (H(2)ImTSC). The crystal and molecular structures of the 'free' ligand and of [SnMe2(ImTSC)]

机译:咪唑-2-甲醛甲醛缩氨基脲(H(2)ImTSC)的Diorganotin(IV)配合物。 “游离”配体和[SnMe2(ImTSC)]的晶体和分子结构

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The compounds [SnR2(ImTSC)] (R = Me, Bu-n or Ph; H(2)ImTSC = imidazole-2-carbaldehyde thiosemicarbazone) were synthesized by treating the appropriate diorganotin(IV) oxide with the ligand in ethanol. The structures of H(2)ImTSC . 0.5H(2)O and [SnMe2(ImTSC)]. EtOH were determined by X-ray diffractometry. The thiosemicarbazone chain of the former has E,E,E configuration and is almost coplanar with the imidazole ring. A rich network of hydrogen bonds involving all potential donor and acceptor groups of H(2)ImTSC and the water molecule stabilizes the crystal lattice. The crystal of the dimethyltin(IV) complex is composed of discrete molecules that are likewise linked by hydrogen bonds. The Sn is bound to the two methyl groups and to an N,N,S-tridentate thiosemicarbazonato dianion (ImTSC(2-)) in a highly distorted trigonal bipyramidal arrangement with the thioamide sulfur and the imidazole nitrogen apical. The Sn-N bond lengths [2.129(5) and 2.174(5) Angstrom] are close to the sum of the covalent radii and dominate the metal-ligand interaction. The Sn-S bond length [2.659(2) Angstrom] suggests a weak bond. The unusual co-ordination mode of the ImTSC(2-) anion creates four- and six-membered stannole rings. The EtOH is bound to the complex via hydrogen bonds involving the nitrogen of the imidazole that is not co-ordinated to the tin and the thiosemicarbazone NH2 group. The IR spectra of the Bu-n and Ph derivatives suggest that they are structurally similar to the methyl complex. H-1, C-13 and Sn-119 NMR spectroscopy indicates that the structure of the complexes in the solid state persists in CDCl3 solution. For H(2)ImTSC, N-15 NMR data are presented in addition to IR and H-1 and C-13 NMR data. [References: 22]
机译:化合物[SnR2(ImTSC)](R = Me,Bu-n或Ph; H(2)ImTSC =咪唑-2-甲醛二硫代氨基脲)是通过用乙醇中的配体处理适当的二有机锡(IV)氧化物来合成的。 H(2)ImTSC的结构。 0.5H(2)O和[SnMe2(ImTSC)]。 EtOH通过X射线衍射法测定。前者的硫半脲酮链具有E,E,E构型,与咪唑环几乎共面。涉及所有潜在的H(2)ImTSC和水分子的潜在供体和受体基团的氢键的丰富网络稳定了晶格。二甲基锡(IV)配合物的晶体由离散的分子组成,这些分子同样通过氢键连接。 Sn以两个高度扭曲的三角双锥体排列方式与两个甲基和一个N,N,S-三齿硫代半碳酰氨基二价阴离子(ImTSC(2-))结合在一起,并带有硫代酰胺硫和咪唑氮顶端。 Sn-N键长度[2.129(5)和2.174(5)埃]接近共价半径的总和,并主导金属-配体相互作用。 Sn-S键长度[2.659(2)埃]表明键较弱。 ImTSC(2-)阴离子的不寻常配位模式会生成四元和六元锡环。 EtOH通过氢键结合到配合物上,该氢键涉及不与锡和硫代半脲NH2基团配位的咪唑的氮。 Bu-n和Ph衍生物的红外光谱表明,它们在结构上与甲基配合物相似。 H-1,C-13和Sn-119 NMR光谱表明,固态络合物的结构在CDCl3溶液中持续存在。对于H(2)ImTSC,除了IR和H-1和C-13 NMR数据外,还提供N-15 NMR数据。 [参考:22]

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