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五氟硫基对立体化学的控制。

The control of stereochemistry by the pentafluorosulfanyl group.

机构信息

Department of Chemistry, University at Albany, SUNY, 1400 Washington Ave., Albany, NY 12222, USA.

出版信息

Org Biomol Chem. 2018 May 2;16(17):3151-3159. doi: 10.1039/c7ob03146g.

Abstract

The influence of pentafluorosulfanylation on biological activity has been revealed in numerous comparative studies of biologically active compounds, but considerably less is known about the influence of pentafluorosulfanylation on reactivity. Among the distinctive properties of the pentafluorosulfanyl group is the profound dipole moment that results from introduction of this substituent. It has been shown that dipolar effects coupled with the steric demand of the SF5 group may be employed to influence the stereochemistry of reactions, especially those processes with significant charge separation in the transition state. The Staudinger ketene-imine cycloaddition reaction is an ideal platform for investigation of dipolar control of diastereoselectivity by the pentafluorosulfanyl group.

摘要

五氟硫基化对生物活性的影响在大量生物活性化合物的对比研究中已经得到揭示,但人们对五氟硫基化对反应性的影响知之甚少。五氟硫基的独特性质之一是引入该取代基后产生的深远偶极矩。已经表明,偶极效应与 SF5 基团的空间位阻相结合,可以用来影响反应的立体化学,特别是那些在过渡态中具有显著电荷分离的过程。施陶丁格烯酮-亚胺环加成反应是研究五氟硫基通过偶极控制非对映选择性的理想平台。

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