Institut für Chemie, Technische Universität Berlin , Straße des 17. Juni 135, Sekr. C2, D-10623 Berlin, Germany.
J Am Chem Soc. 2013 Nov 27;135(47):17958-68. doi: 10.1021/ja409720c. Epub 2013 Nov 13.
The reactivity of ylide-like phosphasilene 1 [LSi(TMS)═P(TMS), L = PhC(NtBu)2] with group 10 d(10) transition metals is reported. For the first time, a reaction of a phosphasilene with a transition metal that actually involves the silicon-phosphorus double bond was found. In the reaction of 1 with ethylene bis(triphenylphosphine) platinum(0), a complete silicon-phosphorus bond breakage occurs, yielding the unprecedented dinuclear platinum complex 3 [LSi{Pt(PPh3)}2P(TMS)2]. Spectroscopic, structural, and theoretical analysis of complex 3 revealed the cationic silylene (silyliumylidene) character of the silicon unit in complex 3. Similarly, formation of the analogous dinuclear palladium complex 4 [LSi{Pd(PPh3)}2P(TMS)2] from tetrakis(triphenylphosphine) palladium(0) was observed. On the other hand, in the case of bis(cyclooctadiene) nickel(0) as starting material, a distinctively different product, the bis(silylene) nickel complex 5 [{(LSi)2P(TMS)}Ni(COD)], was obtained. Complex 5 was fully characterized including X-ray diffraction analysis. Density functional theory calculations of the reaction mechanisms showed that the migration of the TMS group in the case of platinum and palladium was induced by the oxidative addition of the transition metal into the silicon-silicon bond. The respective platinum intermediate 2 [LSi{Pt(TMS)(PPh3)}P(TMS)] was also experimentally observed. This is contrasted by the reaction of nickel, in which the equilibrium of phosphasilene 1 and the phosphinosilylene 6 [LSiP(TMS)2] was utilized for a better coordination of the silicon(II) moiety in comparison with phosphorus to the transition metal center.
膦硅烯 1 [LSi(TMS)═P(TMS),L = PhC(NtBu)2] 与第 10 族 d(10)过渡金属的反应性已被报道。首次发现了膦硅烯与过渡金属的反应实际上涉及硅-磷双键。在 1 与乙烯双(三苯基膦)铂(0)的反应中,完全发生了硅-磷键断裂,生成了前所未有的双核铂配合物 3 [LSi{Pt(PPh3)}2P(TMS)2]。配合物 3 的光谱、结构和理论分析表明,配合物 3 中硅单元具有阳离子甲硅烷基(甲硅烷基亚基)的特征。类似地,从四(三苯基膦)钯(0)形成了类似的双核钯配合物 4 [LSi{Pd(PPh3)}2P(TMS)2]。另一方面,以双(环辛二烯)镍(0)为起始原料,得到了截然不同的产物,双(甲硅烷基)镍配合物 5 [{(LSi)2P(TMS)}Ni(COD)]。配合物 5 进行了全面的表征,包括 X 射线衍射分析。反应机制的密度泛函理论计算表明,在铂和钯的情况下,TMS 基团的迁移是由过渡金属对硅-硅键的氧化加成诱导的。实验上还观察到了相应的铂中间体 2 [LSi{Pt(TMS)(PPh3)}P(TMS)]。这与镍的反应形成对比,在镍的反应中,利用膦硅烯 1 和磷硅亚基 6 [LSiP(TMS)2] 的平衡,使硅(II)部分与磷相比更好地配位到过渡金属中心。