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双配体催化剂用于杂芳烃的非导向 C-H 烯烃化反应。

Dual-Ligand Catalyst for the Nondirected C-H Olefination of Heteroarenes.

机构信息

Department of Chemistry, The Scripps Research Institute, 10550 N. Torrey Pines Road, La Jolla, California 92037, United States.

出版信息

J Am Chem Soc. 2023 Apr 12;145(14):8198-8208. doi: 10.1021/jacs.3c01631. Epub 2023 Mar 28.

Abstract

Pd(II)-catalyzed nondirected C-H functionalization of heteroarenes is a significant challenge for the following reasons: poor reactivity of electron-deficient heterocycles and the unproductive coordination of Lewis basic nitrogen atoms. Existing methodologies using palladium catalysis often employ a large excess of heterocycle substrates to overcome these hurdles. Despite recent advances in nondirected functionalization of arenes that allow them to be used as limiting reagents, the reaction conditions are incompatible with electron-deficient heteroarenes. Herein we report a dual-ligand catalyst that enables Pd(II)-catalyzed nondirected C-H olefination of heteroarenes without using a large excess of substrate. In general, the use of 1-2 equiv of substrates was sufficient to obtain synthetically useful yields. The reactivity was rationalized by the synergy between two types of ligands: a bidentate pyridine-pyridone ligand promotes C-H cleavage; the monodentate heterocycle substrate acts as a second ligand to form a cationic Pd(II) complex that has high affinity for arenes. The proposed dual-ligand cooperation is supported by a combination of X-ray, kinetics, and control experiments.

摘要

Pd(II) 催化的杂芳烃无导向 C-H 功能化存在以下挑战:缺电子杂环的反应性差和Lewis 碱性氮原子的非生产性配位。现有的使用钯催化的方法通常需要大量的杂环底物来克服这些障碍。尽管最近在芳烃的无导向功能化方面取得了进展,允许它们作为限制试剂使用,但反应条件与缺电子杂芳烃不兼容。在此,我们报告了一种双配体催化剂,它可以在不使用大量底物的情况下实现 Pd(II) 催化的杂芳烃无导向 C-H 烯丙基化反应。通常,使用 1-2 当量的底物足以获得具有合成用途的产率。通过两种类型配体之间的协同作用来合理化反应性:双齿吡啶-吡啶酮配体促进 C-H 断裂;单价杂环底物作为第二种配体形成具有高芳烃亲和力的阳离子 Pd(II) 配合物。通过 X 射线、动力学和对照实验的结合,支持了所提出的双配体协同作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7a2/10173962/2d8fa308cb17/nihms-1897079-f0001.jpg

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