Yang Tao, Xiong Wenhui, Sun Guangyu, Yang Weiran, Lu Mandi, Koh Ming Joo
School of Chemistry and Chemical Engineering, Nanchang University, Nanchang, Jiangxi 330031, P. R. China.
Department of Chemistry, National University of Singapore, 4 Science Drive 2, Singapore 117544, Republic of Singapore.
J Am Chem Soc. 2024 Oct 23;146(42):29177-29188. doi: 10.1021/jacs.4c11602. Epub 2024 Oct 12.
Tertiary alkylamines are privileged structural motifs widely present in natural products, pharmaceutical agents, and bioactive molecules, and their efficient synthesis has been a longstanding goal in organic chemistry. The functionalization of α-amino radicals derived from abundant precursors represents an emerging approach to accessing alkylamines, but application of this strategy to obtain tertiary alkylamines remains challenging. Here, we show that dual photoredox/nickel catalysis enables aminoalkylation of organohalides (sp- and sp-hybridized) in combination with secondary alkylamines and aldehydes. The multicomponent process proceeds through selective generation of α-amino radicals from the reduction of in situ-generated iminium ions by photoredox catalysis, followed by nickel-catalyzed cross-coupling to build a wide array of functionally diverse tertiary alkylamines. This strategy could also be extended to unprecedented four-component reactions and their asymmetric variants to deliver enantioenriched α-aryl-substituted γ-amino acid derivatives. Taken together, this work offers a streamlined synthetic route to aliphatic tertiary amines.
叔烷基胺是广泛存在于天然产物、药物制剂和生物活性分子中的优势结构基序,其高效合成一直是有机化学领域长期追求的目标。从丰富的前体衍生而来的α-氨基自由基的官能团化是一种获取烷基胺的新兴方法,但将该策略应用于制备叔烷基胺仍然具有挑战性。在此,我们展示了双光氧化还原/镍催化能够实现有机卤化物(sp和sp杂化)与仲烷基胺和醛的氨基烷基化反应。该多组分过程通过光氧化还原催化原位生成的亚胺离子还原选择性生成α-氨基自由基,随后通过镍催化的交叉偶联构建一系列功能多样的叔烷基胺。该策略还可扩展到前所未有的四组分反应及其不对称变体,以提供对映体富集的α-芳基取代的γ-氨基酸衍生物。综上所述,这项工作为脂肪族叔胺提供了一条简化的合成路线。