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Nickel-Catalyzed Dicarbofunctionalization of Alkenes

机译:镍催化的烯烃二碳官能化

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摘要

1,2-Dicarbofunctionalization of alkenes has emerged as an efficient synthetic strategy for preparing substituted molecules by coupling readily available alkenes with electrophiles and/or nucleophiles. Nickel complexes serve as effective catalysts owing to their tendency to undergo facile oxidative addition and slow beta-hydride elimination, and their capability to access both two-electron and radical pathways. Two-component alkene functionalization reactions have achieved high chemo-, regio-, and stereoselectivities by tethering one of the coupling partners to the alkene substrate. Three-component reactions, however, often incorporate directing groups to control the selectivity. Only a few examples of directing-group-free difunctionalizations of unactivated alkenes have been reported. Therefore, great opportunities exist for the development of three-component difunctionalization reactions stereoselectivities.
机译:烯烃的1,2-二碳官能化是通过易于用电子特药物和/或亲核试剂的烯烃偶联制备取代分子的有效合成策略。 由于其倾向于经历容易氧化添加和缓慢的β-氢化物消除,并且其能够进入双电子和自由基途径的能力,镍复合物用作有效催化剂。 通过将一个偶联伴侣与烯基底物联合,实现了两分组分烯烃官能化反应。 然而,三分组分反应通常掺入指导基团以控制选择性。 据报道,只有少数关于无粘连的烯烃的无灭活烯烃的无衍生物偏差的实例。 因此,存在巨大的机遇,以发展三组分各向化反应立体选择性。

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