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Electrochemical Vicinal Difluorination of Alkenes: Scalable and Amenable to Electron-rich Substrates

机译:烯烃的电化学邻离子二氟化:可扩展和富含电子基底的

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摘要

Fluorinated alkyl groups are important motifs in bioactive compounds, positively influencing pharmacokinetics, potency and conformation. The oxidative difluorination of alkenes represents an important strategy for their preparation, yet current methods are limited in their alkene-types and tolerance of electron-rich, readily oxidized functionalities, as well as in their safety and scalability. Herein, we report a method for the difluorination of a number of unactivated alkene-types that is tolerant of electron-rich functionality, giving products that are otherwise unattainable. Key to success is the electrochemical generation of a hypervalent iodine mediator using an "ex-cell" approach, which avoids oxidative substrate decomposition. The more sustainable conditions give good to excellent yields in up to decagram scales.
机译:氟化烷基是生物活性化合物中的重要基色,积极影响药代动力学,效力和构象。 烯烃的氧化性二氟化是它们制备的重要策略,但目前的方法在其烯烃类型和耐电子易氧化功能的烯烃类型和耐受性中受到限制,以及它们的安全性和可扩展性。 在此,我们报告了一种对富含电子功能性的许多不活动烯烃类型的二氟化的方法,提供否则无法实现的产品。 成功的关键是使用“前细胞”方法的高效碘介质的电化学产生,其避免了氧化衬底分解。 越来越可持续的条件良好地屈服于十分级别的屈服度。

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