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镍催化的芳基氯和酚衍生物与丙酮的单选择性α-芳基化反应。

Nickel-Catalyzed Mono-Selective α-Arylation of Acetone with Aryl Chlorides and Phenol Derivatives.

机构信息

Univ Lyon, Université Lyon 1, Institute of Chemistry and Biochemistry (ICBMS-UMR CNRS 5246), CNRS, INSA, CPE-Lyon, 1 Rue victor Grignard, 69622, Villeurbanne, France.

Univ Lyon, Université Lyon 1, Laboratoire des Multimatériaux et Interfaces (LMI), UMR 5615, CNRS, Bâtiment Chevreul, Avenue du 11 novembre 1918, 69622, Villeurbanne cedex, France.

出版信息

Angew Chem Int Ed Engl. 2020 Oct 19;59(43):18948-18953. doi: 10.1002/anie.202006826. Epub 2020 Aug 25.

Abstract

The challenging nickel-catalyzed mono-α-arylation of acetone with aryl chlorides, pivalates, and carbamates has been achieved for the first time. A nickel/Josiphos-based catalytic system is shown to feature unique catalytic behavior, allowing the highly selective formation of the desired mono-α-arylated acetone. The developed methodology was applied to a variety of (hetero)aryl chlorides including biologically relevant derivatives. The methodology has been extended to the unprecedented coupling of acetone with phenol derivatives. Mechanistic studies allowed the isolation and characterization of key Ni and Ni catalytic intermediates. The Josiphos ligand is shown to play a key role in the stabilization of Ni intermediates to allow a Ni /Ni catalytic pathway. Mechanistic understanding was then leveraged to improve the protocol using an air-stable Ni pre-catalyst.

摘要

首次实现了具有挑战性的镍催化丙酮与芳基氯化物、频哪醇盐和氨基甲酸酯的单-α-芳基化反应。镍/手性膦配体Josiphos 为基础的催化体系表现出独特的催化行为,允许高度选择性地形成所需的单-α-芳基化丙酮。所开发的方法学已应用于多种(杂)芳基氯化物,包括具有生物相关性的衍生物。该方法学已扩展到丙酮与酚衍生物的前所未有的偶联。机理研究允许关键的 Ni 和 Ni 催化中间体的分离和表征。手性膦配体被证明在稳定 Ni 中间体以允许 Ni/Ni 催化途径方面发挥关键作用。然后,利用机理理解来使用空气稳定的 Ni 前催化剂来改进该方案。

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