To Tuong Anh, Phan Nhu T A, Mai Binh Khanh, Nguyen Thanh Vinh
School of Chemistry, University of New South Wales Sydney NSW 2052 Australia
Department of Chemistry, University of Pittsburgh Pennsylvania 15260 USA
Chem Sci. 2024 Apr 11;15(19):7187-7197. doi: 10.1039/d4sc01503g. eCollection 2024 May 15.
The halolactonization reaction provides rapid access to densely functionalized lactones from unsaturated carboxylic acids. The / regioselectivity of this cyclization reaction is primarily determined by the electronic stabilization of alkene substituents, thus making it inherently dependent on substrate structures. Therefore this method often affords one type of halolactone regioisomer only. Herein, we introduce a simple and efficient method for regioselectivity-switchable bromolactonization reactions mediated by HFIP solvent. Two sets of reaction conditions were developed, each forming -products or -products in excellent regioselectivity. A combination of computational and experimental mechanistic studies not only confirmed the crucial role of HFIP, but also revealed the formation of -products under kinetic control and -products under thermodynamic control. This study paves the way for future work on the use of perfluorinated solvents to dictate reaction outcomes in organic synthesis.
卤内酯化反应能够从不饱和羧酸快速合成官能团密集的内酯。这种环化反应的区域选择性主要由烯烃取代基的电子稳定性决定,因此本质上依赖于底物结构。所以该方法通常只能得到一种区域异构体的卤内酯。在此,我们介绍一种由HFIP溶剂介导的区域选择性可切换的溴内酯化反应的简单有效方法。开发了两组反应条件,每组条件都能以优异的区域选择性生成α-产物或β-产物。计算和实验机理研究相结合,不仅证实了HFIP的关键作用,还揭示了动力学控制下生成α-产物以及热力学控制下生成β-产物的过程。这项研究为未来利用全氟溶剂控制有机合成反应结果的工作铺平了道路。