Choi Serim, Choi Yongseok, Kim Yongjae, Lee Jaehoo, Lee Sarah Yunmi
Department of Chemistry, Yonsei University, Seoul 03722, Republic of Korea.
J Am Chem Soc. 2023 Nov 6. doi: 10.1021/jacs.3c09369.
Catalytic cross-couplings of tertiary alkyl electrophiles with carbon nucleophiles offer a powerful platform for constructing quaternary carbon centers, which are prevalent in bioactive molecules. However, these reactions remain underdeveloped primarily because of steric challenges that impede efficient bond formation. Herein, we describe the copper-catalyzed synthesis of such centers through the C()-C() bond-forming reaction between tertiary alkyl halides and arene rings of aniline derivatives, enabled by the strategic implementation of bidentate bis(cyclopropenimine) ligands. The copper catalyst bound by two imino-nitrogen atoms of these ligands, which have never been employed in metal catalysis previously, is highly effective in rapidly activating tertiary halides to generate alkyl radicals, allowing them to react with aryl nucleophiles under mild conditions with remarkably short reaction times (1-2 h). Various tertiary halides bearing carbonyl functional groups can be coupled with secondary or primary anilines, furnishing a range of quaternary carbon centers in good yields. Several mechanistic observations support the generation of copper(II) species and alkyl radicals which as a result elucidate the steps in the proposed catalytic cycle.
叔烷基亲电试剂与碳亲核试剂的催化交叉偶联为构建季碳中心提供了一个强大的平台,季碳中心在生物活性分子中普遍存在。然而,这些反应仍未得到充分发展,主要是因为空间位阻挑战阻碍了有效的键形成。在此,我们描述了通过叔烷基卤化物与苯胺衍生物的芳环之间的C()-C()键形成反应,在双齿双(环丙烯亚胺)配体的策略性应用下,铜催化合成此类中心。由这些配体的两个亚氨基氮原子配位的铜催化剂,此前从未用于金属催化,在快速活化叔卤化物以生成烷基自由基方面非常有效,使它们能够在温和条件下与芳基亲核试剂反应,反应时间极短(1-2小时)。各种带有羰基官能团的叔卤化物可以与仲胺或伯胺偶联,以良好的产率提供一系列季碳中心。一些机理观察结果支持铜(II)物种和烷基自由基的生成,从而阐明了所提出的催化循环中的步骤。