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首页> 外文期刊>Current organic chemistry >Heterocycle Construction via Transition Metal-Catalyzed C-H Functionalization and C-Heteroatom Bond Formation
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Heterocycle Construction via Transition Metal-Catalyzed C-H Functionalization and C-Heteroatom Bond Formation

机译:通过过渡金属催化的C-H官能化和C-杂原子键形成的杂环结构

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摘要

Heterocycles are fundamental building blocks for natural products and biologically active compounds. Over the past decades, substantial progress has been made in transition metal-catalyzed C-H bond functionalization. The majority of C-H functionalization studies have been focused on the formation of C-C bond, and the synthesis of heterocyclic compounds has been generally achieved from further elaboration of the resulting products after C-H functionalization. However, in very recent years, direct C-heteroatom coupling via C-H functionalization followed by C-heteroatom (heteroatom = N, O, S, P, etc.) bond formation has been extensively developed, providing efficient protocols for synthesizing various heterocycles. In this review, a brief overview is given of the recent advances in the field. The synthetic strategies are categorized and presented according to (1) types of C-H bonds (Csp~2-H and Csp~3-H) and (2) types of Cheteroatom bonds formed.
机译:杂环化合物是天然产物和生物活性化合物的基本组成部分。在过去的几十年中,过渡金属催化的C-H键功能化取得了实质性进展。大多数C-H功能化研究都集中在C-C键的形成上,杂环化合物的合成通常是通过C-H功能化后进一步精制所得产物来实现的。然而,在最近几年中,已经广泛地开发了通过C-H官能化然后C-杂原子(杂原子= N,O,S,P等)的直接C-杂原子偶联,其提供了用于合成各种杂环的有效方案。在这篇综述中,简要概述了该领域的最新进展。根据(1)C-H键的类型(Csp〜2-H和Csp〜3-H)和(2)所形成的化学原子的类型对合成策略进行分类和介绍。

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