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Chances and Limits of the Coordination Chemistry withBis(benzene-l2-dithiolato) Ligands

机译:配位化学的机会和局限性双(苯-12-二硫代巯基)配体

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摘要

The incorporation of benzene-l,2-dithiolato building blocks into supramolecular coordination assemblies is the main objective of the investigations described here. Special interest is directed towards dinuclear complexes with bis(benzene-l,2-dithiolato) ligands, which might be able to form helical structures. Bis(benzene-l,2-dithiolato) ligands are accessible by ortho-functionalization and subsequent linkage of two benzene-l,2-dithiol units. The preparation of well defined complexes of titanium, cobalt and nickel with bis(benzene-l,2-dithiolato) ligands requires strictly thermodynamic equilibration conditions. In that case the size and shape of the ligand backbone determine if dinuclear double-stranded or mononuclear chelate complexes are obtained. The dinuclear double-stranded complexes with Ni(II) and Ni(III) are characterized by a coplanar non-helical arrangement of the square-planar bis(benzene-l,2-dithiolato)nickelate moieties. The complete structural characterization of the series [M(C6H4S2 - 1,2)3]n - (n = 0, 1, 2) for molybdenum and tungsten indicates an interesting coordination chemistry of dinuclear triple-stranded complexes.
机译:将苯-1,2-二硫代脲结构单元掺入超分子配位体中是本文所述研究的主要目的。特别感兴趣的是具有双(苯-1,2-二硫代巯基)配体的双核配合物,其可能能够形成螺旋结构。双(苯-1,2-二硫醇基)配体可通过邻位官能化和随后连接两个苯-1,2-二硫醇单元来获得。钛,钴和镍与双(苯-1,2-二硫代巯基)配体的定义明确的配合物的制备需要严格的热力学平衡条件。在那种情况下,配体主链的大小和形状决定了是否获得双核双链或单核螯合物。具有Ni(II)和Ni(III)的双核双链络合物的特征在于,方形的双(苯-1,2-二硫代巯基)镍酸酯部分的共面非螺旋排列。 [M(C6H4S2-1,2)3] n -(n = 0,1,2)系列对于钼和钨的完整结构表征表明,双核三链有趣的配位化学复合体。

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