Bourbon Paul, Vitse Kassandra, Martin-Mingot Agnès, Geindre Hugo, Guégan Frédéric, Michelet Bastien, Thibaudeau Sébastien
Université de Poitiers, CNRS, Institut de Chimie des Milieux et Matériaux de Poitiers (IC2MP), 86073, Poitiers, Cedex 9, France.
Nat Commun. 2024 Aug 28;15(1):7435. doi: 10.1038/s41467-024-49421-8.
Electrophilic aromatic substitution is one of the most mechanistically studied reactions in organic chemistry. However, precluded by innate substituent effects, the access to certain substitution patterns remains elusive. While selective C-H alkylation of biorelevant molecules is eagerly awaited, especially for the insertion of a methyl group whose magic effect can boost lead molecules potency, one of the most obvious strategies would rely on electrophilic aromatic substitution. Yet, the historical Friedel-Crafts methylation remains to date poorly selective and limited to activated simple aromatics. Here, we report the development of a selective electrophilic methylation enabling the direct access to highly desirable 1,3-disubstituted arenes. This study demonstrates that this reaction is driven by the generation of long-lived arenium intermediates generated by protonation in superacid and can be applied to a large variety of functionalized (hetero)aromatics going from standard building blocks to active pharmaceutical ingredients.
亲电芳香取代反应是有机化学中机理研究最为深入的反应之一。然而,由于固有的取代基效应,获得某些取代模式仍然难以实现。虽然人们急切期待生物相关分子的选择性C-H烷基化反应,特别是引入具有神奇效应能提高先导分子活性的甲基,但最明显的策略之一依赖于亲电芳香取代反应。然而,传统的傅克甲基化反应至今选择性仍然很差,并且仅限于活性简单芳烃。在此,我们报道了一种选择性亲电甲基化反应的开发,该反应能够直接得到非常理想的1,3-二取代芳烃。这项研究表明,该反应是由在超强酸中质子化产生的长寿命芳鎓中间体驱动的,并且可以应用于从标准结构单元到活性药物成分的多种功能化(杂)芳烃。