Pagire Santosh K, Shu Chao, Reich Dominik, Noble Adam, Aggarwal Varinder K
School of Chemistry, University of Bristol, Cantock's Close, Bristol BS8 1TS, U.K.
National Key Laboratory of Green Pesticide, College of Chemistry, Central China Normal University (CCNU), 152 Luoyu Road, Wuhan, Hubei 430079, China.
J Am Chem Soc. 2023 Aug 23;145(33):18649-18657. doi: 10.1021/jacs.3c06524. Epub 2023 Aug 8.
Carbon-phosphorus bond formation is significant in synthetic chemistry because phosphorus-containing compounds offer numerous indispensable biochemical roles. While there is a plethora of methods to access organophosphorus compounds, phosphonylations of readily accessible alkyl radicals to form aliphatic phosphonates are rare and not commonly used in synthesis. Herein, we introduce a novel phosphorus radical trap "BecaP" that enables facile and efficient phosphonylation of alkyl radicals under visible light photocatalytic conditions. Importantly, the ambiphilic nature of BecaP allows redox neutral reactions with both nucleophilic (activated by single-electron oxidation) and electrophilic (activated by single-electron reduction) alkyl radical precursors. Thus, a broad scope of feedstock alkyl potassium trifluoroborate salts and redox active carboxylate esters could be employed, with each class of substrate proceeding through a distinct mechanistic pathway. The mild conditions are applicable to the late-stage installation of phosphonate motifs into medicinal agents and natural products, which is showcased by the straightforward conversion of baclofen (muscle relaxant) to phaclofen (GABA antagonist).
碳 - 磷键的形成在合成化学中具有重要意义,因为含磷化合物具有众多不可或缺的生物化学作用。虽然有大量方法可用于制备有机磷化合物,但将易于获得的烷基自由基进行膦酰化以形成脂肪族膦酸酯的方法却很少见,且在合成中不常用。在此,我们介绍了一种新型的磷自由基捕获剂“BecaP”,它能够在可见光光催化条件下实现烷基自由基的简便高效膦酰化。重要的是,BecaP的双亲性使得它能够与亲核(通过单电子氧化活化)和亲电(通过单电子还原活化)烷基自由基前体发生氧化还原中性反应。因此,可以使用范围广泛的原料烷基三氟硼酸钾盐和氧化还原活性羧酸酯,每一类底物都通过独特的机理途径进行反应。这些温和的条件适用于将膦酸酯基序后期引入药物和天然产物中,巴氯芬(肌肉松弛剂)直接转化为法氯芬(GABA拮抗剂)就展示了这一点。