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Reversible Silylium Transfer between P-H and Si-H Donors

机译:在P-H和Si-H捐赠者之间可逆鳞状转移

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摘要

The Mo=PR2 pi* orbital in a Mo phosphenium complex acts as acceptor in a new P-III-based Lewis superacid. This Lewis acid (LA) participates in electrophilic Si-H abstraction from E3SiH to give a Mo-bound secondary phosphine ligand, Mo-PR2H. The resulting Et3Si+ ion remains associated with the Mo complex, stabilized by eta(1)-P-H donation, yet undergoes rapid exchange with an eta(1)-Si-H adduct of free silane in solution. The equilibrium between these two adducts presents an opportunity to assess the role of this new LA in catalytic reactions of silanes: is the LA acting as a catalyst or as an initiator? Preliminary results suggest that a cycle including the Mo-bound phosphine-silylium adduct dominates in the catalytic hydrosilylation of acetophenone, relative to a putative cycle involving the silane-silylium adduct or "free" silylium.
机译:钼磷络合物中的Mo=PR2π*轨道在一种新的P-Ⅲ基路易斯超强酸中充当受体。这种路易斯酸(LA)参与从E3SiH中提取亲电Si-H,得到Mo结合的二次膦配体Mo-PR2H。由此产生的Et3Si+离子仍与Mo络合物有关,通过eta(1)-P-H供体稳定,但在溶液中与游离硅烷的eta(1)-Si-H加合物快速交换。这两种加合物之间的平衡提供了一个机会来评估这种新的LA在硅烷催化反应中的作用:LA是作为催化剂还是作为引发剂?初步结果表明,在苯乙酮的催化硅氢加成反应中,与涉及硅烷硅氢加成物或“游离”硅氢加成物的假定循环相比,包含钼结合膦硅氢加成物的循环占主导地位。

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