Filloux Claire M, Rovis Tomislav
Department of Chemistry, Colorado State University , Fort Collins, Colorado 80523, United States.
J Am Chem Soc. 2015 Jan 14;137(1):508-17. doi: 10.1021/ja511445x. Epub 2014 Dec 29.
Asymmetric hydroheteroarylation of alkenes represents a convenient entry to elaborated heterocyclic motifs. While chiral acids are known to mediate asymmetric addition of electron-rich heteroarenes to Michael acceptors, very few methods exploit transition metals to catalyze alkylation of heterocycles with olefins via a C-H activation, migratory insertion sequence. Herein, we describe the development of an asymmetric, intermolecular hydroheteroarylation reaction of α-substituted acrylates with benzoxazoles. The reaction provides 2-substitued benzoxazoles in moderate to excellent yields and good to excellent enantioselectivities. Notably, a series of mechanistic studies appears to contradict a pathway involving enantioselective protonation of a Rh(I)-enolate, despite the fact that such a mechanism is invoked almost unanimously in the related addition of aryl boronic acids to methacrylate derivatives. Evidence suggests instead that migratory insertion or beta-hydride elimination is enantiodetermining and that isomerization of a Rh(I)-enolate to a Rh(I)-heterobenzyl species insulates the resultant α-stereocenter from epimerization. A bulky ligand, CTH-(R)-Xylyl-P-Phos, is crucial for reactivity and enantioselectivity, as it likely discourages undesired ligation of benzoxazole substrates or intermediates to on- or off-cycle rhodium complexes and attenuates coordination-promoted product epimerization.
烯烃的不对称氢杂芳基化反应为构建复杂的杂环结构提供了一种便捷的方法。虽然已知手性酸可介导富电子杂芳烃与迈克尔受体的不对称加成,但很少有方法利用过渡金属通过C-H活化、迁移插入序列来催化杂环与烯烃的烷基化反应。在此,我们描述了一种α-取代丙烯酸酯与苯并恶唑的不对称分子间氢杂芳基化反应的开发。该反应以中等至优异的产率和良好至优异的对映选择性提供2-取代苯并恶唑。值得注意的是,一系列机理研究似乎与涉及Rh(I)-烯醇化物对映选择性质子化的途径相矛盾,尽管在芳基硼酸与甲基丙烯酸酯衍生物的相关加成反应中几乎一致地援引了这样一种机理。相反,证据表明迁移插入或β-氢化物消除是对映体决定步骤,并且Rh(I)-烯醇化物异构化为Rh(I)-杂苄基物种可使所得的α-立体中心免受差向异构化。一种庞大的配体CTH-(R)-Xylyl-P-Phos对反应性和对映选择性至关重要,因为它可能会抑制苯并恶唑底物或中间体与环上或环外铑配合物的不期望的配位,并减弱配位促进的产物差向异构化。