Yu Hui, Xu Feng
Department of Pharmacy, Shizhen College of Guizhou University of Traditional Chinese Medicine Guiyang Guizhou 550200 China
School of Mathematics and Information Science, Guiyang University Guiyang Guizhou 550005 P. R. China
RSC Adv. 2023 Mar 13;13(12):8238-8253. doi: 10.1039/d3ra00400g. eCollection 2023 Mar 8.
Nitrogen-containing heterocyclic compounds are prevalent in various natural products, medicines, agrochemicals, and organic functional materials. Among strategies to prepare nitrogen-containing heterocyclic compounds, pathways involving benzyne intermediates are attractive given that they can readily assemble highly diverse heterocyclic compounds in a step-economical manner under transition-metal-free conditions. The synthesis of nitrogen-containing heterocyclic compounds from benzyne intermediates offers an alternative strategy to the conventional metal-catalyzed activation approaches. In the past years, chemists have witnessed the revival of benzyne chemistry, mainly attributed to the wide application of various novel benzyne precursors. The cycloaddition of benzynes is a powerful tool for the synthesis of nitrogen-containing heterocyclic compounds, which can be constructed by [ + 2] cyclization of benzyne intermediates generated from benzyne precursors under mild reaction conditions. This review focuses on the application of cycloaddition reactions involving benzynes in the construction of various nitrogen-containing heterocyclic compounds.
含氮杂环化合物广泛存在于各种天然产物、药物、农用化学品和有机功能材料中。在制备含氮杂环化合物的策略中,涉及苯炔中间体的途径很有吸引力,因为它们可以在无过渡金属条件下以步骤经济的方式轻松组装高度多样的杂环化合物。由苯炔中间体合成含氮杂环化合物为传统的金属催化活化方法提供了一种替代策略。在过去几年中,化学家见证了苯炔化学的复兴,这主要归功于各种新型苯炔前体的广泛应用。苯炔的环加成是合成含氮杂环化合物的有力工具,它可以通过在温和反应条件下由苯炔前体生成的苯炔中间体的[ + 2]环化来构建。本综述重点介绍了涉及苯炔的环加成反应在构建各种含氮杂环化合物中的应用。