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使用高价碘试剂的非钯催化氧化偶联反应

Non-Palladium-Catalyzed Oxidative Coupling Reactions Using Hypervalent Iodine Reagents.

作者信息

Shetgaonkar Samata E, Raju Aleena, China Hideyasu, Takenaga Naoko, Dohi Toshifumi, Singh Fateh V

机构信息

Chemistry Division, School of Advanced Science, VIT University, Chennai, India.

Department of Medical Bioscience, Nagahama Institute of Bio-Science and Technology, Nagahama, Japan.

出版信息

Front Chem. 2022 Jul 1;10:909250. doi: 10.3389/fchem.2022.909250. eCollection 2022.

Abstract

Transition metal-catalyzed direct oxidative coupling reactions via C-H bond activation have emerged as a straightforward strategy for the construction of complex molecules in organic synthesis. The direct transformation of C-H bonds into carbon-carbon and carbon-heteroatom bonds renders the requirement of prefunctionalization of starting materials and, therefore, represents a more efficient alternative to the traditional cross-coupling reactions. The key to the unprecedented progress made in this area has been the identification of an appropriate oxidant that facilitates oxidation and provides heteroatom ligands at the metal center. In this context, hypervalent iodine compounds have evolved as mainstream reagents particularly because of their excellent oxidizing nature, high electrophilicity, and versatile reactivity. They are environmentally benign reagents, stable, non-toxic, and relatively cheaper than inorganic oxidants. For many years, palladium catalysis has dominated these oxidative coupling reactions, but eventually, other transition metal catalysts such as gold, copper, platinum, iron, etc. were found to be promising alternate catalysts for facilitating such reactions. This review article critically summarizes the recent developments in non-palladium-catalyzed oxidative coupling reactions mediated by hypervalent iodine (III) reagents with significant emphasis on understanding the mechanistic aspects in detail.

摘要

通过C-H键活化的过渡金属催化直接氧化偶联反应已成为有机合成中构建复杂分子的一种直接策略。将C-H键直接转化为碳-碳键和碳-杂原子键,无需对起始原料进行预官能团化,因此是传统交叉偶联反应更有效的替代方法。该领域取得前所未有的进展的关键在于找到了一种合适的氧化剂,它既能促进氧化反应,又能在金属中心提供杂原子配体。在这种背景下,高价碘化合物已发展成为主流试剂,特别是因为它们具有优异的氧化性质、高亲电性和多样的反应活性。它们是环境友好型试剂,稳定、无毒,且比无机氧化剂相对便宜。多年来,钯催化在这些氧化偶联反应中占据主导地位,但最终发现其他过渡金属催化剂,如金、铜、铂、铁等,是促进此类反应的有前景的替代催化剂。这篇综述文章批判性地总结了由高价碘(III)试剂介导的非钯催化氧化偶联反应的最新进展,重点是详细理解其机理方面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c4e/9283985/3c514d0ad1b6/fchem-10-909250-g001.jpg

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