Department of Chemistry, Korea Advanced Institute of Science and Technology, Daejeon 34141, Korea.
Center for Catalytic Hydrocarbon Functionalizations, Institute for Basic Science, Daejeon 34141, Korea.
J Am Chem Soc. 2020 Dec 2;142(48):20470-20480. doi: 10.1021/jacs.0c10333. Epub 2020 Nov 18.
Reported herein is a modular, NiH-catalyzed system capable of proximal-selective hydroamination of unactivated alkenes with diverse amine sources. The key to the successful implementation of this approach is the promotion of NiH insertion into even highly substituted olefins via coordination of the bidentate directing group to the nickel complex. A wide range of primary and secondary amines can be installed in both internal and terminal unactivated alkenes with excellent regiocontrol under the optimized reaction conditions. This protocol is flexible and general for the preparation of a variety of valuable β- and γ-amino acid building blocks that would otherwise be difficult to synthesize. The utility of this transformation was further demonstrated by the site-selective late-stage modification of complex and medicinally relevant molecules. Combined experimental and computational studies illuminate the detailed reaction mechanism.
本文报道了一种模块化的 NiH 催化体系,能够实现各种胺源对未活化烯烃的邻位选择性氨化反应。该方法成功的关键在于通过双齿导向基团与镍配合物的配位,促进 NiH 插入甚至高度取代的烯烃中。在优化的反应条件下,该方法可以在内部和末端未活化的烯烃中,通过高区域选择性引入各种伯胺和仲胺。该方案对于制备各种有价值的β-和γ-氨基酸砌块具有很好的适用性,这些砌块在其他条件下很难合成。该转化的实用性通过对复杂的和与药物相关的分子的选择性后期修饰进一步得到了证明。结合实验和计算研究阐明了详细的反应机制。