Deis Thomas, Forte Jérémy, Fensterbank Louis, Lemière Gilles
CNRS, Institut Parisien de Chimie Moléculaire, IPCM, Sorbonne Université, 4 Place Jussieu, F-75005 Paris, France.
Molecules. 2022 Mar 8;27(6):1767. doi: 10.3390/molecules27061767.
Pentacoordinate silicon derivatives with a chloromethyl ligand are versatile compounds that are usually obtained from the corresponding tetravalent trialkoxy- or trihalogeno(chloromethyl)silane. We describe herein the synthesis of a chloromethylsilicate bearing two Martin's ligands readily obtained by addition of in situ generated chloromethyllithium to a spirosilane. The reactivity of this new species was evaluated and it has been established that the chloride is displaced by strong nucleophiles such as alkyllithiums and (hetero)aryllithiums. In Lewis acidic conditions, the pentacoordinate silicon species rearranges through a formal insertion of a methylene into one Si-C bond, to form a new tetravalent spirosilane with a six-membered ring. The same kind of rearrangement can be triggered also by addition of a Lewis base. The mechanism of the rearrangement in both conditions has been studied by means of DFT calculations.
具有氯甲基配体的五配位硅衍生物是多用途化合物,通常由相应的四价三烷氧基或三卤代(氯甲基)硅烷制得。本文描述了一种带有两个马丁配体的氯甲基硅酸盐的合成,该化合物可通过将原位生成的氯甲基锂加到螺硅烷中轻松制得。对这种新物种的反应活性进行了评估,结果表明,氯会被强亲核试剂如烷基锂和(杂)芳基锂取代。在路易斯酸性条件下,五配位硅物种通过亚甲基正式插入一个Si-C键进行重排,形成一种带有六元环的新的四价螺硅烷。加入路易斯碱也能引发同样类型的重排。通过密度泛函理论计算研究了两种条件下重排的机理。