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光照诱导、铜催化的外消旋三级亲电试剂对苯胺的对映转化烷基化反应:合成与机理。

Photoinduced, Copper-Catalyzed Enantioconvergent Alkylations of Anilines by Racemic Tertiary Electrophiles: Synthesis and Mechanism.

机构信息

Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, California 91125, United States.

出版信息

J Am Chem Soc. 2022 Mar 16;144(10):4550-4558. doi: 10.1021/jacs.1c12749. Epub 2022 Mar 7.

DOI:10.1021/jacs.1c12749
PMID:35253433
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9239302/
Abstract

Transition-metal catalysis of substitution reactions of alkyl electrophiles by nitrogen nucleophiles is beginning to emerge as a powerful strategy for synthesizing higher-order amines, as well as controlling their stereochemistry. Herein, we report that a readily accessible chiral copper catalyst (commercially available components) can achieve the photoinduced, enantioconvergent coupling of a variety of racemic tertiary alkyl electrophiles with aniline nucleophiles to generate a new C-N bond with good ee at the fully substituted stereocenter of the product; whereas this photoinduced, copper-catalyzed coupling proceeds at -78 °C, in the absence of light and catalyst, virtually no C-N bond formation is observed even upon heating to 80 °C. The mechanism of this new catalytic enantioconvergent substitution process has been interrogated with the aid of a wide array of tools, including the independent synthesis of proposed intermediates and reactivity studies, spectroscopic investigations featuring photophysical and EPR data, and DFT calculations. These studies led to the identification of three copper-based intermediates in the proposed catalytic cycle, including a chiral three-coordinate formally copper(II)-anilido (DFT analysis points to its formulation as a copper(I)-anilidyl radical) complex that serves as a persistent radical that couples with a tertiary organic radical to generate the desired C-N bond with good enantioselectivity.

摘要

氮亲核试剂取代反应的过渡金属催化作用正在成为合成高一级胺以及控制其立体化学的一种强大策略。在此,我们报告称,一种易于获得的手性铜催化剂(市售组件)可以实现多种外消旋三级烷基亲电试剂与苯胺亲核试剂的光诱导对映选择性偶联,从而在产物的完全取代立体中心生成具有良好对映选择性的新 C-N 键;而在没有光和催化剂的情况下,这种光诱导的铜催化偶联在-78°C 下进行,即使加热到 80°C,也几乎观察不到 C-N 键形成。借助各种工具,包括对提议的中间体的独立合成和反应性研究、具有光物理和 EPR 数据的光谱研究以及 DFT 计算,对这种新的催化对映选择性取代过程的机制进行了探究。这些研究导致在提议的催化循环中鉴定了三种基于铜的中间体,包括手性三配位形式的铜(II)-苯胺基(DFT 分析表明其形式为铜(I)-苯胺基自由基)络合物,该络合物作为持久自由基与三级有机自由基耦合,以良好的对映选择性生成所需的 C-N 键。

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