苯环部分氢化吲哚(四氢吲哚)的合成研究进展

IF 2.2 4区 化学 Q2 CHEMISTRY, ORGANIC Synthesis-Stuttgart Pub Date : 2023-10-13 DOI:10.1055/s-0042-1751488
Vakhid A. Mamedov, Nataliya A. Zhukova
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引用次数: 0

摘要

摘要本文对4,5,6,7-四氢吲哚进行了片段分析,并在此基础上对近15年来发表的现有合成方法进行了总结和分析,必要时还对前人的研究成果进行了分析。考虑了所提出的反应机理,以及影响过程进程的因素。这些因素包括:温度、催化剂的种类和含量、促进添加剂、工艺方法等。特别注意的是根本的新方法,这些方法使得从可用和廉价的试剂合成上述杂环系统的各种衍生物成为可能,并且在某些情况下在无害环境的条件下。1介绍2生成四氢吲哚的分子内反应2.1 N-C2成键的闭环反应(a) 2.2 C2-C3成键的闭环反应(b) 2.3 C3-C3a成键的闭环反应(c) 2.4 C7a-N成键的闭环反应(e) 2.5 C4-C5成键的闭环反应(g) 2.6 C3a-C4成键的闭环反应(h) 3分子间反应生成四氢吲哚3.1闭环反应与N-C2 + C3-C3a成键(ac) 3.2与N-C2 + C7a-N成键的闭合反应(ae) 3.3与C3-C3a + C7a-N成键的闭合反应(ce) 3.4与N-C2、C3-C3a和C7a-N成键的闭合反应(ace) 4 4,5,6,7-四氢吲哚合成中吲哚的加氢和过氢吲哚的氧化还原过程5
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Recent Advances in the Synthesis of Indoles with Partially Hydrogenated Benzene Ring (Tetrahydroindoles)
Abstract In this review, a fragmentary analysis of 4,5,6,7-tetrahydroindoles was performed and, on its basis, the existing methods of their synthesis published over the past 15 years have been summarized, and analyzed, as well as, if necessary, an analysis of earlier works is carried out. The proposed reaction mechanism is considered, as well as factors that significantly influence the course of the process. Among such factors: temperature, type and content of the catalyst, promoting additives, method of the process, etc. Particular attention is paid to fundamentally new methods that make it possible to synthesize various derivatives of the mentioned heterocyclic systems from available and cheap reagents, and in some cases under environmentally benign conditions. 1 Introduction 2 Intramolecular Reactions Leading To Tetrahydroindoles 2.1 Ring Closure Reactions with N–C2 Bond Formation (a) 2.2 Ring Closure Reactions with C2–C3 Bond Formation (b) 2.3 Ring Closure Reactions with C3–C3a Bond Formation (c) 2.4 Ring Closure Reactions with C7a–N Bond Formation (e) 2.5 Ring Closure Reactions with C4–C5 Bond Formation (g) 2.6 Ring Closure Reactions with C3a–C4 Bond Formation (h) 3 Intermolecular Reactions Leading To Tetrahydroindoles 3.1 Ring Closure Reactions with N–C2 + C3–C3a Bond Formation (ac) 3.2 Ring Closure reactions with N–C2 + C7a–N Bond Formation (ae) 3.3 Ring Closure reactions with C3–C3a + C7a–N Bond formation (ce) 3.4 Ring Closure Reactions with N–C2, C3–C3a, and C7a–N Bond Formation (ace) 4 Recovery Processes (Hydrogenation) of Indoles and Oxidation of Perhydroindoles in the Synthesis of 4,5,6,7-Tetrahydroindoles 5 Conclusion
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来源期刊
Synthesis-Stuttgart
Synthesis-Stuttgart 化学-有机化学
CiteScore
4.50
自引率
7.70%
发文量
435
审稿时长
1 months
期刊介绍: SYNTHESIS is an international full-paper journal devoted to the advancement of the science of chemical synthesis. It covers all fields of organic chemistry involving synthesis, including catalysis, organometallic, medicinal, biological, and photochemistry, but also related disciplines. SYNTHESIS provides dependable research results with detailed and reliable experimental procedures and full characterization of all important new products as well as scientific primary data.
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