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通过稀土催化剂的烯丙基C(sp)-H活化实现α,β-不饱和醛亚胺与烯烃的区域和非对映选择性环化反应。

Regio- and Diastereoselective Annulation of α,β-Unsaturated Aldimines with Alkenes via Allylic C(sp)-H Activation by Rare-Earth Catalysts.

作者信息

Cong Xuefeng, Hao Na, Mishra Aniket, Zhuo Qingde, An Kun, Nishiura Masayoshi, Hou Zhaomin

机构信息

Advanced Catalysis Research Group, RIKEN Center for Sustainable Resource Science, 2-1 Hirosawa, Wako, Saitama 351-0198, Japan.

Organometallic Chemistry Laboratory, RIKEN Cluster for Pioneering Research, 2-1 Hirosawa, Wako, Saitama 351-0198, Japan.

出版信息

J Am Chem Soc. 2024 Apr 10;146(14):10187-10198. doi: 10.1021/jacs.4c02144. Epub 2024 Mar 28.

Abstract

The [3 + 2] or [4 + 2] annulation of α,β-unsaturated aldimines with alkenes via β'- or γ-allylic C(sp)-H activation is, in principle, an atom-efficient route for the synthesis of five- or six-membered-ring cycloalkylamines, which are important structural motifs in numerous natural products, bioactive molecules, and pharmaceuticals. However, such a transformation has remained undeveloped to date probably due to the lack of suitable catalysts. We report herein for the first time the regio- and diastereoselective [3 + 2] and [4 + 2] annulations of α,β-unsaturated imines with alkenes via allylic C(sp)-H activation by half-sandwich rare-earth catalysts having different metal ion sizes. The reaction of α-methyl-substituted α,β-unsaturated aldimines with alkenes by a CMeSiMe-ligated scandium catalyst took place in a -diastereoselective [3 + 2] annulation fashion via C(sp)-H activation at the α-methyl group (β'-position), exclusively affording alkylidene-functionalized cyclopentylamines with excellent -diastereoselectivity. In contrast, the reaction of β-methyl-substituted α,β-unsaturated aldimines with alkenes by a CMe-ligated cerium catalyst proceeded in a -diastereoselective [4 + 2] annulation fashion via γ-allylic C(sp)-H activation, selectively yielding multisubstituted 2-cyclohexenylamines with excellent -diastereoselectivity. The mechanistic details of these transformations have been elucidated by deuterium-labeling experiments, kinetic isotope effect studies, and the isolation and transformations of key reaction intermediates. This work offers an efficient and selective protocol for the synthesis of a new family of cycloalkylamine derivatives, featuring 100% atom efficiency, high regio- and diastereoselectivity, broad substrate scope, and an unprecedented reaction mechanism.

摘要

通过β'-或γ-烯丙基C(sp)-H活化实现α,β-不饱和醛亚胺与烯烃的[3 + 2]或[4 + 2]环化反应,原则上是合成五元或六元环烷基胺的原子经济高效路线,这些环烷基胺是众多天然产物、生物活性分子和药物中的重要结构基序。然而,由于缺乏合适的催化剂,这种转化至今仍未得到发展。我们在此首次报道了通过具有不同金属离子尺寸的半夹心稀土催化剂,实现α,β-不饱和亚胺与烯烃通过烯丙基C(sp)-H活化进行区域和非对映选择性的[3 + 2]和[4 + 2]环化反应。α-甲基取代的α,β-不饱和醛亚胺与烯烃在CMeSiMe连接的钪催化剂作用下,通过α-甲基(β'-位)的C(sp)-H活化以非对映选择性的[3 + 2]环化方式进行反应,专一性地得到具有优异非对映选择性的亚烷基官能化环戊胺。相反,β-甲基取代的α,β-不饱和醛亚胺与烯烃在CMe连接的铈催化剂作用下,通过γ-烯丙基C(sp)-H活化以非对映选择性的[4 + 2]环化方式进行反应,选择性地生成具有优异非对映选择性的多取代2-环己烯基胺。通过氘标记实验、动力学同位素效应研究以及关键反应中间体的分离和转化,阐明了这些转化反应的机理细节。这项工作为合成一类新的环烷基胺衍生物提供了一种高效且选择性的方法,具有100%的原子经济性、高区域和非对映选择性、广泛的底物范围以及前所未有的反应机理。

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