Zweifel烯烃研究进展

IF 2.2 4区 化学 Q2 CHEMISTRY, ORGANIC
Xin Li, Qiuling Song
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引用次数: 0

摘要

在过去的几十年里,兹威费尔烯烃已经成为构建碳碳双键最强大和最可靠的工具之一。该反应具有效率高、通用性好、不使用过渡金属、立体专一性好等特点,优于其它许多烯烃方法。自Aggarwal等人于2017年发表了Zweifel烯化50年历史总结以来,在有机金属新物种的利用、电化学或光化学途径的进行以及新产品的提供等方面取得了显著的成就。本文综述和讨论了茨威费尔烯烃的最新研究进展及其在天然产物合成中的最新应用。1导论2新有机金属物质的Zweifel烯烃3新迁移基团的Zweifel烯烃4电化学和光催化Zweifel烯烃5新的Zweifel烯烃消除和迁移模式6天然产物合成中的Zweifel烯烃7涉及Zweifel烯烃机理的其他反应8结论与展望
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent Progress in Zweifel Olefination: An Update
During the past several decades, Zweifel olefination has emerged as one of the most powerful and reliable tools for constructing C–C double bonds. This reaction features high efficiency, good versatility, nonuse of transition metals, and perfect stereospecificity, which make it superior to many other olefination methods. Since the summary of Zweifel olefination’s 50-years history was published in 2017 by Aggarwal et al., remarkable achievements have been made in terms of employing new organometallic species, proceeding through electrochemical or photochemical pathways, and furnishing new kinds of products. This short review summarizes and discusses the very recent progress in Zweifel olefination and its latest application in natural products synthesis. 1 Introduction 2 Zweifel Olefination with New Organometallic Species 3 Zweifel Olefination with New Migrating Groups 4 Electrochemical and Photocatalyzed Zweifel Olefination 5 New Elimination and Migration Patterns of Zweifel Olefination 6 Zweifel Olefination in Natural Product Synthesis 7 Other Reactions Involving the Zweifel Olefination Mechanism 8 Conclusions and Outlook
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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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