Organisch-Chemisches Institut, Westfälische Wilhelms-Universität Münster, Münster, Germany.
Nat Chem. 2019 Mar;11(3):264-270. doi: 10.1038/s41557-018-0197-2. Epub 2019 Jan 21.
Piperidines and fluorine substituents are both independently indispensable components in pharmaceuticals, agrochemicals and materials. Logically, the incorporation of fluorine atoms into piperidine scaffolds is therefore an area of tremendous potential. However, synthetic approaches towards the formation of these architectures are often impractical. The diastereoselective synthesis of substituted monofluorinated piperidines often requires substrates with pre-defined stereochemistry. That of multifluorinated piperidines is even more challenging, and often needs to be carried out in multistep syntheses. In this report, we describe a straightforward process for the one-pot rhodium-catalysed dearomatization-hydrogenation of fluoropyridine precursors. This strategy enables the formation of a plethora of substituted all-cis-(multi)fluorinated piperidines in a highly diastereoselective fashion through pyridine dearomatization followed by complete saturation of the resulting intermediates by hydrogenation. Fluorinated piperidines with defined axial/equatorial orientation of fluorine substituents were successfully applied in the preparation of commercial drugs analogues. Additionally, fluorinated PipPhos as well as fluorinated ionic liquids were obtained by this dearomatization-hydrogenation process.
哌啶和氟取代基都是药物、农化和材料中不可或缺的独立组成部分。因此,将氟原子引入哌啶骨架是一个极具潜力的领域。然而,这些结构的合成方法往往不切实际。取代的单氟化哌啶的非对映选择性合成通常需要具有预定义立体化学的底物。多氟化哌啶的合成则更具挑战性,通常需要进行多步合成。在本报告中,我们描述了一种通过铑催化一锅法脱芳构化-氢化氟吡啶前体的直接方法。该策略通过吡啶脱芳构化,然后通过氢化完全饱和所得中间体,以高非对映选择性方式形成大量取代的全顺式(多)氟化哌啶。具有确定的氟取代基轴向/赤道取向的氟化哌啶成功应用于商业药物类似物的制备中。此外,还通过脱芳构化-氢化过程获得了氟化 PipPhos 和氟化离子液体。