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可见光诱导的1,n-烯炔的自由基串联环化反应研究进展
引用本文:李文,黄昌凤,曹华,刘想.可见光诱导的1,n-烯炔的自由基串联环化反应研究进展[J].化学通报,2021,84(3):240-245,239.
作者姓名:李文  黄昌凤  曹华  刘想
作者单位:广东药科大学医药化工学院广东省化妆品工程技术研究中心 中山528458
基金项目:广东省创新强校项目(2019KQNCX061)和省市共建重点学科建设专项资金资助
摘    要:碳氮杂环化合物广泛存在于天然产物、生物活性分子、药物等相关化合物以及许多其他精细化学品中。近年来,发展了大量的合成方法制备该类化合物。其中,可见光诱导的1,n-烯炔的自由基串联环化反应条件绿色友好、操作简单、化学选择性和官能团兼容性好,已成为制备该类化合物的强有力工具。本文主要根据自由基产生的类型概述了近来可见光诱导的1,n-烯炔的自由基串联环化反应这一快速发展领域的新进展。

关 键 词:光催化  1  n-烯炔  合成方法
收稿时间:2020/8/22 0:00:00
修稿时间:2020/9/10 0:00:00

Progress in the Visible-Light-Induced Radical Cascade Cyclization of 1,n-Enynes
Li Wen,Huang Changfeng,Cao Hu,Liu Xiang.Progress in the Visible-Light-Induced Radical Cascade Cyclization of 1,n-Enynes[J].Chemistry,2021,84(3):240-245,239.
Authors:Li Wen  Huang Changfeng  Cao Hu  Liu Xiang
Institution:School of Chemistry and Chemical Engineering and Guangdong Cosmetics Engineering Technology Research Center,Guangdong Pharmaceutical University,School of Chemistry and Chemical Engineering and Guangdong Cosmetics Engineering Technology Research Center,Guangdong Pharmaceutical University,School of Chemistry and Chemical Engineering and Guangdong Cosmetics Engineering Technology Research Center,Guangdong Pharmaceutical University,School of Chemistry and Chemical Engineering and Guangdong Cosmetics Engineering Technology Research Center,Guangdong Pharmaceutical University
Abstract:Carbon and nitrogen heterocyclic compounds are widely found in natural products, bioactive molecules, drugs and many other fine chemicals. In recent years, a large number of synthetic methods have been developed to prepare these compounds. Among them, visible- light-induced radical cascade cyclization of 1, n-enynes has become a powerful tool for the preparation of these compounds because of its green and friendly conditions, simple operation, good chemical selectivity and functional group compatibility. Based on the types of free radicals, this paper summarizes the latest progress in the field of visible light induced radical tandem cyclization of 1, n-enynes since 2013.
Keywords:photocatalysis  1  n-enynes  synthetic  methods
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