Williams Wendy L, Gutiérrez-Valencia Neyci E, Doyle Abigail G
Department of Chemistry, Princeton University, Princeton, New Jersey 08544, United States.
Department of Chemistry and Biochemistry, University of California, Los Angeles, California 90095, United States.
J Am Chem Soc. 2023 Nov 8;145(44):24175-24183. doi: 10.1021/jacs.3c08301. Epub 2023 Oct 27.
The arylation of 2-alkyl aziridines by nucleophilic ring-opening or transition-metal-catalyzed cross-coupling enables facile access to biologically relevant β-phenethylamine derivatives. However, both approaches largely favor C-C bond formation at the less-substituted carbon of the aziridine, thus enabling access to only linear products. Consequently, despite the attractive bond disconnection that it poses, the synthesis of branched arylated products from 2-alkyl aziridines has remained inaccessible. Herein, we address this long-standing challenge and report the first branched-selective cross-coupling of 2-alkyl aziridines with aryl iodides. This unique selectivity is enabled by a Ti/Ni dual-catalytic system. We demonstrate the robustness of the method by a twofold approach: an additive screening campaign to probe functional group tolerance and a feature-driven substrate scope to study the effect of the local steric and electronic profile of each coupling partner on reactivity. Furthermore, the diversity of this feature-driven substrate scope enabled the generation of predictive reactivity models that guided mechanistic understanding. Mechanistic studies demonstrated that the branched selectivity arises from a Ti-induced radical ring-opening of the aziridine.
通过亲核开环或过渡金属催化的交叉偶联对2-烷基氮丙啶进行芳基化反应,能够轻松获得具有生物学相关性的β-苯乙胺衍生物。然而,这两种方法在很大程度上都倾向于在氮丙啶取代较少的碳原子上形成C-C键,因此只能得到线性产物。因此,尽管2-烷基氮丙啶构成了有吸引力的键切断方式,但由其合成支链芳基化产物仍然难以实现。在此,我们解决了这一长期存在的挑战,并报道了首例2-烷基氮丙啶与芳基碘的支链选择性交叉偶联反应。这种独特的选择性是由Ti/Ni双催化体系实现的。我们通过两种方式证明了该方法的稳健性:一种是用于探究官能团耐受性的添加剂筛选,另一种是用于研究每个偶联伙伴的局部空间和电子特征对反应活性影响的特征驱动底物范围研究。此外,这种特征驱动底物范围的多样性使得能够生成指导机理理解的预测反应活性模型。机理研究表明,支链选择性源于Ti诱导的氮丙啶自由基开环。