Poitiers Nadine E, Giarrana Luisa, Huch Volker, Zimmer Michael, Scheschkewitz David
Krupp Chair of General and Inorganic Chemistry, Saarland University D-66123 Saarbrücken Germany
Chem Sci. 2020 Jul 2;11(30):7782-7788. doi: 10.1039/d0sc02861d.
Taking advantage of pendant tetrylene side-arms, stable unsaturated Si silicon clusters (siliconoids) with the benzpolarene motif (the energetic counterpart of benzene in silicon chemistry) are successfully employed as ligands towards Group 9 metals. The pronounced σ-donating properties of the tetrylene moieties allow for sequential oxidative addition and reductive elimination events without complete dissociation of the ligand at any stage. In this manner, either covalently linked or core-expanded metallasiliconoids are obtained. [Rh(CO)Cl] inserts into an endohedral Si-Si bond of the silylene-functionalized hexasilabenzpolarene leading to an unprecedented coordination sphere of the Rh centre with five silicon atoms in the initial product, which is subsequentially converted to a simpler derivative under reconstruction of the Si benzpolarene motif. In the case of [Ir(cod)Cl] (cod = 1,5-cyclooctadiene) a similar Si-Si insertion leads to the contraction of the Si cluster core with concomitant transfer of a chlorine atom to a silicon vertex generating an exohedral chlorosilyl group. Metallasiliconoids are employed in the isomerization of terminal alkenes to 2-alkenes as a catalytic benchmark reaction, which proceeds with competitive selectivities and reaction rates in the case of iridium complexes.
利用悬垂的特屈伦侧臂,具有苯并芴基序(硅化学中苯的能量对应物)的稳定不饱和硅硅簇(硅化物)成功地用作与第9族金属的配体。特屈伦部分显著的σ供体性质允许连续的氧化加成和还原消除反应,而配体在任何阶段都不会完全解离。通过这种方式,可以得到共价连接或核心扩展的金属硅化物。[Rh(CO)Cl]插入到硅烯官能化的六硅苯并芴的内面Si-Si键中,导致初始产物中Rh中心具有前所未有的由五个硅原子组成的配位球,随后在Si苯并芴基序的重构下转化为更简单的衍生物。对于[Ir(cod)Cl](cod = 1,5-环辛二烯),类似的Si-Si插入导致硅簇核心收缩,同时一个氯原子转移到硅顶点,生成一个外表面氯硅烷基团。金属硅化物被用作末端烯烃异构化为2-烯烃的催化基准反应,在铱配合物的情况下,该反应以竞争选择性和反应速率进行。