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多种烯酮导向反应模式导致多环萜烯衍生物的选择性光氟化反应。

Multiple Enone-Directed Reactivity Modes Lead to the Selective Photochemical Fluorination of Polycyclic Terpenoid Derivatives.

机构信息

Department of Chemistry, Johns Hopkins University , 3400 N. Charles Street, Baltimore, Maryland 21218, United States.

出版信息

J Am Chem Soc. 2017 Feb 15;139(6):2208-2211. doi: 10.1021/jacs.7b00335. Epub 2017 Feb 7.

Abstract

In the realm of aliphatic fluorination, the problem of reactivity has been very successfully addressed in recent years. In contrast, the associated problem of selectivity, that is, directing fluorination to specific sites in complex molecules, remains a great, fundamental challenge. In this report, we show that the enone functional group, upon photoexcitation, provides a solution. Based solely on orientation of the oxygen atom, site-selective photochemical fluorination is achieved on steroids and bioactive polycycles with up to 65 different sp C-H bonds. We have also found that γ-, β-, homoallylic, and allylic fluorination are all possible and predictable through the theoretical modes reported herein. Lastly, we present a preliminary mechanistic hypothesis characterized by intramolecular hydrogen atom transfer, radical fluorination, and ultimate restoration of the enone. In all, these results provide a leap forward in the design of selective fluorination of complex substrates that should be relevant to drug discovery, where fluorine plays a prominent role.

摘要

在脂肪族氟化领域,近年来成功解决了反应性问题。相比之下,相关的选择性问题,即引导氟化反应到复杂分子中的特定位置,仍然是一个巨大的、基本的挑战。在本报告中,我们表明,烯酮官能团在光激发时提供了一种解决方案。仅基于氧原子的取向,就可以在甾体和生物活性多环化合物上实现具有多达 65 种不同 sp³C-H 键的选择性光化学氟化。我们还发现,通过本文报道的理论模型,可以预测和实现 γ-、β-、同烯丙基和烯丙基氟化。最后,我们提出了一个初步的反应机制假设,其特征是分子内氢原子转移、自由基氟化以及烯酮的最终恢复。总之,这些结果为复杂底物的选择性氟化设计提供了一个飞跃,这应该与药物发现相关,其中氟起着重要作用。

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