Piou Tiffany, Rovis Tomislav
Department of Chemistry, Colorado State University, Fort Collins, Colorado 80523, USA.
Nature. 2015 Nov 5;527(7576):86-90. doi: 10.1038/nature15691. Epub 2015 Oct 21.
Alkenes are the most ubiquitous prochiral functional groups--those that can be converted from achiral to chiral in a single step--that are accessible to synthetic chemists. For this reason, difunctionalization reactions of alkenes (whereby two functional groups are added to the same double bond) are particularly important, as they can be used to produce highly complex molecular architectures. Stereoselective oxidation reactions, including dihydroxylation, aminohydroxylation and halogenation, are well established methods for functionalizing alkenes. However, the intermolecular incorporation of both carbon- and nitrogen-based functionalities stereoselectively across an alkene has not been reported. Here we describe the rhodium-catalysed carboamination of alkenes at the same (syn) face of a double bond, initiated by a carbon-hydrogen activation event that uses enoxyphthalimides as the source of both the carbon and the nitrogen functionalities. The reaction methodology allows for the intermolecular, stereospecific formation of one carbon-carbon and one carbon-nitrogen bond across an alkene, which is, to our knowledge, unprecedented. The reaction design involves the in situ generation of a bidentate directing group and the use of a new cyclopentadienyl ligand to control the reactivity of rhodium. The results provide a new way of synthesizing functionalized alkenes, and should lead to the convergent and stereoselective assembly of amine-containing acyclic molecules.
烯烃是合成化学家能够利用的最普遍存在的前手性官能团——即那些可以一步从非手性转化为手性的官能团。因此,烯烃的双官能化反应(即将两个官能团添加到同一个双键上)尤为重要,因为它们可用于构建高度复杂的分子结构。立体选择性氧化反应,包括二羟基化、氨基羟基化和卤化,是使烯烃官能化的成熟方法。然而,尚未有关于在烯烃上立体选择性地分子间引入碳基和氮基官能团的报道。在此,我们描述了一种铑催化的烯烃在双键同一(顺式)面上的碳胺化反应,该反应由碳 - 氢活化引发,使用烯氧基邻苯二甲酰亚胺作为碳和氮官能团的来源。据我们所知,该反应方法能够在烯烃上分子间、立体特异性地形成一个碳 - 碳键和一个碳 - 氮键,这是前所未有的。该反应设计涉及原位生成双齿导向基团,并使用新型环戊二烯基配体来控制铑的反应活性。这些结果提供了一种合成官能化烯烃的新方法,并有望实现含胺无环分子的汇聚式和立体选择性组装。