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薁作为用于C-H活化的非苯型芳香化合物的拓展:铑和铱催化薁羧酸与炔烃的氧化环化反应以合成薁内酯和苯并薁类化合物。

Expansion of Azulenes as Nonbenzenoid Aromatic Compounds for C-H Activation: Rhodium- and Iridium-Catalyzed Oxidative Cyclization of Azulene Carboxylic Acids with Alkynes for the Synthesis of Azulenolactones and Benzoazulenes.

作者信息

Maeng Chanyoung, Son Jeong-Yu, Lee Seung Cheol, Baek Yonghyeon, Um Kyusik, Han Sang Hoon, Ko Gi Hoon, Han Gi Uk, Lee Kyungsup, Lee Kooyeon, Lee Phil Ho

机构信息

Department of Chemistry, Kangwon National University, Chuncheon 24341, Republic of Korea.

Department of Bio-Health Technology, Kangwon National University, Chuncheon 24341, Republic of Korea.

出版信息

J Org Chem. 2020 Mar 6;85(5):3824-3837. doi: 10.1021/acs.joc.9b03448. Epub 2020 Feb 12.

Abstract

Rhodium-catalyzed oxidative [4 + 2] cyclization reactions through the C-H activation of azulene carboxylic acids as nonbenzenoid aromatic compounds with symmetrical and unsymmetrical alkynes were developed under aerobic conditions, which produced azulenolactone derivatives with a wide substrate scope and excellent functional group tolerance. Interestingly, azulenic acids in reaction with alkynes underwent iridium-catalyzed [2 + 2 + 2] cyclization accompanied by decarboxylation to afford tetra(aryl)-substituted benzoazulene derivatives. The reactivity order for C-H activation reaction is greater toward azulene-6-carboxylic acid, azulene-1-carboxylic acid, and azulene-2-carboxylic acid. For the first time, the expansion of azulenes having directing group as nonbenzenoid aromatic compounds for C-H activation was successful, indicating that nonbenzenoid aromatic compounds can be used as good substrates for the C-H activation reaction. Therefore, the research area of C-H activation will certainly expand to nonbenzenoid aromatic compounds in future.

摘要

在有氧条件下,开发了铑催化的通过薁羧酸(作为非苯型芳香化合物)与对称和不对称炔烃的C-H活化进行的氧化[4 + 2]环化反应,该反应生成了具有广泛底物范围和优异官能团耐受性的薁内酯衍生物。有趣的是,薁酸与炔烃反应时会发生铱催化的[2 + 2 + 2]环化反应并伴有脱羧反应,从而得到四(芳基)取代的苯并薁衍生物。C-H活化反应对薁-6-羧酸、薁-1-羧酸和薁-2-羧酸的反应活性顺序更高。首次成功实现了具有导向基团的薁作为用于C-H活化的非苯型芳香化合物的扩展,这表明非苯型芳香化合物可作为C-H活化反应的良好底物。因此,C-H活化的研究领域未来肯定会扩展到非苯型芳香化合物。

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