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Revisiting the iridacycle-catalyzed hydrosilylation of enolizable imines

机译:回顾了iridacycle-catalyzedenolizable亚胺氢化硅烷化反应

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The hydrosilylation of enolizable imines using iridacycle catalysts has been investigated using a family of half-sandwich iridium.III) complexes. Several pitfalls had been detected when using standard procedures, and the use of in situ NMR spectroscopy appeared decisive to assess the actual reaction pathway. The results obtained clearly demonstrate that iridacycle-catalyzed hydrosilylation of enolizable imines with monohydrosilanes should be described as a domino reaction sequence, analogous to the one described by Oestreich et al. for boron-based Lewis acid catalysts. Equimolecular quantities of amine (b) and N-silylated enamine (c) were formed in the first stage, consuming 0.5 eq. of hydrosilane, which were subsequently converted into N-silylated amine (d) through a consecutive catalytic cycle using an additional 0.5 eq. of hydrosilane. However, when polyhydrosilanes were used as hydrosilylating agents, N-silylated amine (d) was directly obtained as the reaction product, but after a fast initial conversion, the reaction suffered from product inhibition. Additionally, iridacycles were also found to be active in the dehydrocoupling of Et3SiH and amines and in the hydrolysis of hydrosilanes, which can be competitive processes. These findings lead to an intricate mechanistic picture containing interrelated processes, which need to be taken into account for the development of more efficient, selective or enantioselective systems.
机译:enolizable亚胺氢化硅烷化反应iridacycle催化剂已使用调查一个家庭的half-sandwich iridium.III)复合物。几个陷阱已经发现当使用标准程序,利用原位核磁共振光谱出现决定性的评估实际的反应途径。清楚地表明iridacycle-catalyzedenolizable亚胺氢化硅烷化反应monohydrosilanes应该被描述为一个domino反应序列,类似于一个描述由Oestreich boron-based路易斯酸等人催化剂。和N-silylated烯胺(c)中形成的第一阶段,消费0.5 eq. hydrosilane,随后被转化成通过连续N-silylated胺(d)使用一个额外的0.5 eq.催化循环hydrosilane。用作hydrosilylating代理N-silylated胺(d)获得的直接反应产品,但快速初始转换后,反应产物抑制。此外,iridacycles也被发现dehydrocoupling Et3SiH和活跃胺的水解hydrosilanes,可竞争的过程。结果导致一个错综复杂的机械图包含相互关联的过程,这需要被考虑为更多的发展高效、选择性或拆分系统。

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