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C-CN 键的形成:多种策略概述。

C-CN bond formation: an overview of diverse strategies.

机构信息

Department of Chemistry, IIT Bombay, Powai, Mumbai 400076, India.

出版信息

Chem Commun (Camb). 2021 Mar 4;57(18):2210-2232. doi: 10.1039/d0cc07783f. Epub 2021 Feb 15.

Abstract

Nitrile or cyano compounds are an important part of structural motifs in dyes, agrochemicals, medicinal compounds, and electronic materials. Also, aryl nitrile is an important intermediate in the preparation of numerous compounds via transformations such as hydrolysis, hydration, reduction, cycloadditions, and nucleophilic additions. Such methods are beneficial for introducing sensitive functional groups in various positions in the multi-step synthesis of natural products and medicinal compounds. In the past decades, various cyanation methods have been reported in the vast arena of chemistry, which have made several building blocks accessible. Previously reported cyanation reviews, letters, and perspectives are written in parts. Thus, today a comprehensive review that will be able to guide readers through the vast pool of C-CN bond forming reactions via different approaches is obligatory. The present feature article depicts the various areas of cyanation methodologies that are based on the metal catalyst used, directed, non-directed, electrochemical, photochemical, asymmetric, and radical based approaches. This feature article will serve as a comprehensive tool to navigate the C-CN (cyanation) reactions across the vast area in synthetic chemistry.

摘要

腈或氰基化合物是染料、农药、医药化合物和电子材料结构基序的重要组成部分。此外,芳基腈是通过水解、水合、还原、环加成和亲核加成等转化制备许多化合物的重要中间体。这些方法有利于在天然产物和医药化合物的多步合成中在各种位置引入敏感的官能团。在过去的几十年中,化学领域报道了各种氰化方法,这些方法使几个构建块变得可用。以前报道的氰化综述、信件和观点都是部分撰写的。因此,今天有必要进行一次全面的综述,以便能够通过不同的方法引导读者了解广泛的 C-CN 键形成反应。本文详细描述了基于所用金属催化剂、导向、非导向、电化学、光化学、不对称和自由基方法的各种氰化方法领域。本文将作为一个全面的工具,指导读者在合成化学的广阔领域中进行 C-CN(氰化)反应。

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