Geitner Felix S, Fässler Thomas F
Department Chemie, Technische Universität München, Lichtenbergstraße 4, 85747 Garching b. München, Germany.
Inorg Chem. 2020 Oct 19;59(20):15218-15227. doi: 10.1021/acs.inorgchem.0c02190. Epub 2020 Oct 5.
Deltahedral nine-atom tetrel element Zintl clusters are promising building blocks for the straightforward solution-based synthesis of intermetalloid clusters through the reaction with organometallic compounds. Herein we report on novel coordination sites of metal--heterocyclic carbene (NHC) complexes to [Ge] clusters and unexpected cluster isomerization. We present the synthesis of a series of coinage metal-NHC complexes of silylated [Ge] clusters [NHCCu(η-Ge{Si(TMS)})] (; TMS = trimethylsilyl) and [NHCM(η-Ge{Si(TMS)})] (, M = Cu, R = Pr; , M = Cu, R = Mes; , M = Cu, R = Dipp; , M = Ag, R = Dipp; , M = Au, R = Dipp), in which the coinage metals coordinate to open rectangular cluster faces and act as additional cluster vertex atoms. Besides representing promising intermediates on the way to larger intermetalloid clusters, the formation of compound shows that Cu-NHC fragments also coordinate to the open-square Ge faces of the tris-silylated [Ge] clusters, contrasting the typical interactions with triangular faces of tris-silylated [Ge] clusters. In compounds and bearing bulky NHC moieties, an unusual silyl group substitution pattern is observed in contrast to , which corresponds to the silyl group arrangement of other metal complexes of bis-silylated [Ge] clusters. In this context, potential silyl group migration mechanisms are discussed.
三角面九原子四价元素津特耳簇合物是通过与有机金属化合物反应直接基于溶液合成类金属簇合物的有前景的构建单元。在此,我们报道了金属-杂环卡宾(NHC)配合物与[Ge]簇合物的新型配位位点以及意外的簇异构化现象。我们展示了一系列硅烷基化[Ge]簇合物的货币金属-NHC配合物的合成,即[NHCCu(η-Ge{Si(TMS)})](;TMS = 三甲基硅基)和[NHCM(η-Ge{Si(TMS)})](,M = Cu,R = Pr;,M = Cu,R = Mes;,M = Cu,R = Dipp;,M = Ag,R = Dipp;,M = Au,R = Dipp),其中货币金属与开放的矩形簇面配位并充当额外的簇顶点原子。除了作为通往更大类金属簇合物途中有前景的中间体之外,化合物 的形成表明Cu-NHC片段也与三硅烷基化[Ge]簇合物的开放方形Ge面配位,这与三硅烷基化[Ge]簇合物三角形面的典型相互作用形成对比。在带有庞大NHC部分的化合物 和 中,观察到一种不寻常的硅烷基取代模式,这与 相反, 对应于双硅烷基化[Ge]簇合物的其他金属配合物的硅烷基排列。在此背景下,讨论了潜在 的硅烷基迁移机制。