首页> 外文期刊>Journal of the Chemical Society, Dalton Transactions. Inorganic Chemistry >Structural chemistry of monodentate donor-solvated mixed lithium-magnesium secondary amide complexes
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Structural chemistry of monodentate donor-solvated mixed lithium-magnesium secondary amide complexes

机译:单齿供体溶剂化的锂镁仲酰胺混合配合物的结构化学

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The monodentate donor-solvated intermetallic lithium-magnesium amide complexes [Mg(HMDS)(3)Li . (THF)] 1 [HMDS=N(SiMe3)(2)], [Mg(HMDS)(3)Li . (Pyr)] 2 and [Mg{N(Cy)(2)}(3)Li . (THF)] 3 [N(Cy)(2)=dicyclohexylamide] have been prepared and characterised by NMR spectroscopy and X-ray crystallography. Synthesis was achieved by the reaction of equimolar amounts of n-BuLi and n,sec-Bu2Mg with three equivalents of the appropriate amine in hexane/donor solution. The molecular structures of 1, 2 and 3 are essentially isostructural containing a central, planar LiNMgN four-membered ring: two amide units bridge to the metal centres whilst the third binds exclusively to magnesium in the terminal position to complete a three-coordinate distorted trigonal planar geometry. The lithium achieves a similar geometry with solvation from a single monodentate donor molecule. Three co-crystalline by-products were also isolated from solution and are included for completeness: [Mg(HMDS)(2)(Bu)Li . Pyr] 4, [(LiHMDS . Pyr)(2)] 5 and [Mg(HMDS)(2). (Pyr)(2)] 6. Complex 4 exhibits a similar structure to 1, 2 and 3 with an alkyl group (consisting of disordered n- and sec-butyl groups) replacing the terminal amido functionality. Complex 4 is produced by a similar method to 2 via incomplete amination in the presence of two equivalents of hexamethyldisilazane (HMDS(H)). In contrast, 5 and 6 are simple homometallic amides formed when an excess of pyridine is introduced into the reaction system. To conclude the study a series of reactions were undertaken in which the stoichiometry of both amine and donor was altered systematically. The results from this study imply that intermetallic aggregation is hindered by the presence of excess donor solvent. [References: 48]
机译:单齿给体溶剂化的金属间锂镁酰胺配合物[Mg(HMDS)(3)Li。 (THF)] 1 [HMDS = N(SiMe3)(2)],[Mg(HMDS)(3)Li。 (Pyr)] 2和[Mg {N(Cy)(2)}(3)Li。 (THF)] 3 [N(Cy)(2)=二环己基酰胺]已经制备并通过NMR光谱和X射线晶体学表征。通过等摩尔量的n-BuLi和n,sec-Bu2Mg与三当量的适当胺在己烷/供体溶液中的反应来完成合成。 1、2和3的分子结构基本上是同构的,包含一个中心的平面LiNMgN四元环:两个酰胺单元桥接到金属中心,而第三个酰胺单元仅在末端位置结合镁,从而完成三坐标扭曲的三角平面几何。锂通过单个单齿供体分子的溶剂化达到相似的几何形状。还从溶液中分离出三种共结晶副产物,为了完整性起见,将它们包括在内:[Mg(HMDS)(2)(Bu)Li。 Pyr] 4,[(LiHMDS。Pyr)(2)] 5和[Mg(HMDS)(2)。 ((Pyr)(2)] 6.配合物4表现出与1、2和3类似的结构,其中烷基(由无序的正丁基和仲丁基组成)取代了末端酰胺基官能团。在与两当量的六甲基二硅氮烷(HMDS(H))存在下,通过不完全胺化反应,通过与2相似的方法制备络合物4。相反,当过量的吡啶引入反应体系中时,5和6是简单的均金属酰胺。为了结束研究,进行了一系列反应,其中胺和供体的化学计量均被系统地改变。这项研究的结果表明,过量供体溶剂的存在会阻碍金属间的聚集。 [参考:48]

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