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由烯丙基硅烷进行区域选择性氟代醇合成及硅氟邻位交叉效应的证据

Regioselective Fluorohydrin Synthesis from Allylsilanes and Evidence for a Silicon-Fluorine Gauche Effect.

作者信息

Clover Alexie W, Jones Adam P, Berger Robert F, Kaminsky Werner, O'Neil Gregory W

机构信息

Department of Chemistry, Western Washington University, Bellingham, Washington 98229, United States.

Department of Chemistry, University of Washington, Seattle, Washington 98195, United States.

出版信息

J Org Chem. 2024 Apr 5;89(7):4309-4318. doi: 10.1021/acs.joc.3c02163. Epub 2024 Mar 8.

Abstract

Allylsilanes can be regioselectively transformed into the corresponding 3-silylfluorohydrin in good yield using a sequence of epoxidation followed by treatment with HF·EtN with or without isolation of the intermediate epoxide. Various silicon-substitutions are tolerated, resulting in a range of 2-fluoro-3-silylpropan-1-ol products from this method. Whereas other fluorohydrin syntheses by epoxide opening using HF·EtN generally require more forcing conditions (e.g., higher reaction temperature), opening of allylsilane-derived epoxides with this reagent occurs at room temperature. We attribute this rate acceleration along with the observed regioselectivity to a β-silyl effect that stabilizes a proposed cationic intermediate. The use of enantioenriched epoxides indicates that both S1- and S2-type mechanisms may be operable depending on substitution at silicon. Conformational analysis by NMR and theory along with a crystal structure obtained by X-ray diffraction points to a preference for silicon and fluorine to be proximal to one another in the products, perhaps favored due to electrostatic interactions.

摘要

烯丙基硅烷可以通过环氧化反应,然后用HF·EtN处理,以良好的产率区域选择性地转化为相应的3-硅基氟代醇,中间环氧化物可以分离也可以不分离。各种硅取代基都能耐受,通过这种方法可得到一系列2-氟-3-硅基丙-1-醇产物。虽然其他通过使用HF·EtN开环环氧化物合成氟代醇的方法通常需要更苛刻的条件(例如,更高的反应温度),但用该试剂开环烯丙基硅烷衍生的环氧化物在室温下即可发生。我们将这种速率加速以及观察到的数据区域选择性归因于β-硅基效应,该效应稳定了所提出的阳离子中间体。使用对映体富集的环氧化物表明,根据硅上的取代情况,S1型和S2型机制可能都可行。通过NMR和理论进行的构象分析以及通过X射线衍射获得的晶体结构表明,产物中硅和氟倾向于彼此靠近,这可能是由于静电相互作用而受到青睐。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dbeb/11002936/53098ce029c2/jo3c02163_0005.jpg

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