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乙烯砜和乙烯亚砜盐化学的最新进展。

Recent Developments in Vinylsulfonium and Vinylsulfoxonium Salt Chemistry.

机构信息

Department of Chemistry, Oakland University, Rochester, MI 40309, USA.

School of Chemical Sciences, Dublin City University, Glasnevin, Dublin 9, Ireland.

出版信息

Molecules. 2018 Mar 23;23(4):738. doi: 10.3390/molecules23040738.

Abstract

This review describes advances in the literature since 2000 in the area of reactions of vinylsulfonium and vinylsulfoxonium salts, with a particular emphasis on stereoselective examples. Although the chemistry of vinylsulfonium salts was first explored back in the 1950s, and that of vinylsulfoxonium salts in the early 1970s, there has been renewed interest in these compounds since the turn of the century. This has been largely due to an increased appreciation for the many synthetic possibilities associated with these valuable electrophiles. The development of improved routes to vinylsulfonium salts allowing for their in situ generation has played a part in accelerating their study. In general, reactions of the two sulfur salt classes follow a similar mechanistic pathway: initial conjugate addition of a nucleophile to the -position, followed by protonation of an ylide intermediate, and cyclization of tethered anion to afford monocyclic or bicyclic product (e.g., cyclopropane, aziridine, oxazole, oxazolidinone, -lactam or -lactone). Alternatively, reactions involve formation of an ylide intermediate followed by intramolecular Johnson-Corey-Chaykovsky reaction (epoxidation or cyclopropanation), and subsequent cyclization to afford the desired bicyclic product (e.g., fused bicyclic epoxide or cyclopropane).

摘要

本文综述了 2000 年以来乙烯基砜翁盐和乙烯基亚砜翁盐反应的研究进展,特别强调了立体选择性的例子。尽管乙烯基砜翁盐的化学性质早在 20 世纪 50 年代就被首次探索,而乙烯基亚砜翁盐的化学性质在 20 世纪 70 年代初被首次探索,但自本世纪初以来,人们对这些化合物重新产生了兴趣。这主要是由于人们越来越重视这些有价值的亲电试剂所具有的许多合成可能性。改进的乙烯基砜翁盐合成路线的发展,允许它们在原位生成,在加速它们的研究方面发挥了作用。一般来说,两种硫盐类的反应遵循相似的反应机理:亲核试剂初始共轭加成到 -位,然后质子化叶立德中间体,以及连接的阴离子环化,得到单环或双环产物(例如,环丙烷、氮丙啶、恶唑、恶唑烷酮、β-内酰胺或β-内酯)。或者,反应涉及叶立德中间体的形成,然后是分子内 Johnson-Corey-Chaykovsky 反应(环氧化或环丙烷化),随后环化得到所需的双环产物(例如,稠合双环环氧化物或环丙烷)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c91b/6017177/a84366c85905/molecules-23-00738-sch001.jpg

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