Dinickel-Catalyzed Regio- and Enantioselective α-Alkylation of Cyclic Ketones with Unactivated Alkyl Halides

IF 4.7 1区 化学 Q1 CHEMISTRY, ORGANIC
Liangwei Zhu, Lin Zhang, Jian Zhang, Peigen Wang, Ruopeng Bai, Zhonglin Tao
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引用次数: 0

Abstract

The asymmetric α-alkylation of simple ketones with unactivated alkyl halides remains a longstanding challenge in organic synthesis. Herein, we report a dinickel-catalyzed asymmetric α-alkylation of cyclic ketones using unactivated alkyl halides as alkylating agents. This methodology accommodates a broad range of substrates, including benzo-fused cyclic ketones, α-aryl and α-alkyl cyclic ketones, and diverse alkyl halides, enabling the construction of chiral ketones with α-quaternary centers in high regio- and enantioselectivity. Mechanistic studies, combining experimental and computational approaches, reveal that this transformation proceeds via a redox-neutral SN2 pathway catalyzed by nickel(I) species intead of commonly seen Ni(II) salt. The unique bimetallic ligand framework plays a dual role: (1) stabilizing adjacent dinickel(I) centers through halogen-bridging interactions, thereby enabling the formation of a highly nucleophilic nickel(I) enolate, and (2) providing a chiral pocket to control the stereochemistry of the reaction.
镍催化环酮与非活化卤化烷基的区域和对映选择性α-烷基化反应
简单酮与未活化的卤代烷的不对称α-烷基化反应是有机合成中一个长期存在的挑战。本文报道了以未活化的卤代烃为烷基化剂,镍催化环酮的不对称α-烷基化反应。该方法适用于广泛的底物,包括苯并环酮、α-芳基环酮和α-烷基环酮以及各种烷基卤化物,从而能够构建具有高区域和对映选择性的α-季中心手性酮。结合实验和计算方法的机理研究表明,这种转化是通过镍(I)种而不是常见的Ni(II)盐催化的氧化还原-中性SN2途径进行的。独特的双金属配体框架起着双重作用:(1)通过卤素桥接作用稳定相邻的镍(I)中心,从而形成高度亲核的镍(I)烯酸酯;(2)提供手性口袋来控制反应的立体化学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Organic Chemistry Frontiers
Organic Chemistry Frontiers CHEMISTRY, ORGANIC-
CiteScore
7.90
自引率
11.10%
发文量
686
审稿时长
1 months
期刊介绍: Organic Chemistry Frontiers is an esteemed journal that publishes high-quality research across the field of organic chemistry. It places a significant emphasis on studies that contribute substantially to the field by introducing new or significantly improved protocols and methodologies. The journal covers a wide array of topics which include, but are not limited to, organic synthesis, the development of synthetic methodologies, catalysis, natural products, functional organic materials, supramolecular and macromolecular chemistry, as well as physical and computational organic chemistry.
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