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铜催化的三组分烯烃碳胺化反应:机理见解及克服局限性的合理设计

Cu-Catalyzed Three-Component Alkene Carboamination: Mechanistic Insights and Rational Design to Overcome Limitations.

作者信息

Ho Tam D, Lee Byung Joo, Buchanan Travis L, Heikes Micah E, Steinert Ryan M, Milem E Grace, Goralski Sean T, Wang Ya-Nong, Lee SangHyun, Lynch Vincent M, Rose Michael J, Mitchell-Koch Katie R, Hull Kami L

机构信息

Department of Chemistry, University of Texas at Austin, 100 East 24th Street, Austin, Texas, 78712, United States.

Department of Chemistry and Biochemistry, Wichita State University, 1845 Fairmount Street, Wichita, Kansas, 67260-0051, United States.

出版信息

J Am Chem Soc. 2024 Sep 11;146(36):25176-25189. doi: 10.1021/jacs.4c08945. Epub 2024 Aug 28.

Abstract

Herein, we report mechanistic investigations into the Cu-catalyzed three-component carboamination of alkenes with α-halo carbonyls and aryl amines via an oxocarbenium intermediate. Monitoring the reaction reveals the formation of transient atom transfer radical addition (ATRA) intermediates with both electron-neutral and deficient vinyl arenes as well as unactivated alkenes. Based on our experimental studies and density functional theory calculations, the oxocarbenium is generated through atom transfer and subsequent intramolecular substitution. Further, mechanistic factors that dictate the regioselectivity of the nucleophilic attack onto the oxocarbenium to afford the γ-amino ester, γ-iminolactone, or γ-lactone are discussed. A strategy to overcome scope limitation with respect to unactivated alkenes is developed using the mechanistic insights gained herein. Finally, we demonstrate that under modified conditions, our Cu catalyst enables the ATRA reaction between a variety of alkyl halides and vinyl arenes/α-olefins, and we present a one-pot, two-step carbofunctionalization with an array of nucleophiles through ATRA/S2.

摘要

在此,我们报道了关于铜催化的烯烃与α-卤代羰基化合物和芳基胺通过氧鎓离子中间体进行三组分碳胺化反应的机理研究。对该反应的监测揭示了在电子中性和缺电子的乙烯基芳烃以及未活化烯烃存在下,瞬态原子转移自由基加成(ATRA)中间体的形成。基于我们的实验研究和密度泛函理论计算,氧鎓离子是通过原子转移和随后的分子内取代生成的。此外,还讨论了决定亲核试剂对氧鎓离子进行亲核进攻以生成γ-氨基酯、γ-亚氨基内酯或γ-内酯的区域选择性的机理因素。利用本文获得的机理见解,开发了一种克服未活化烯烃适用范围限制的策略。最后,我们证明在改进的条件下,我们的铜催化剂能够实现各种卤代烷与乙烯基芳烃/α-烯烃之间的ATRA反应,并且我们展示了通过ATRA/S2与一系列亲核试剂进行的一锅两步碳官能化反应。

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