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Cobaloxime Catalysis: Selective Synthesis of Alkenylphosphine Oxides under Visible Light

机译:Cobaloxime催化:可见光下烯基膦氧化物的选择性合成

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摘要

Direct activation of H-phosphine oxide to react with an unsaturated carbon-carbon bond is a straightforward approach for accessing alkenylphosphine oxides, which shows significant applications in both synthetic and material fields. However, expensive metals and strong oxidants are typically required to realize the transformation. Here, we demonstrate the utility of earth-abundant cobaloxime to convert H-phosphine oxide into its reactive radical species under visible light irradiation. The radical species thus generated can be utilized to functionalize alkenes and alkynes without any external photosensitizer and oxidant. The coupling with terminal alkene generates E-alkenylphosphine oxide with excellent chemo- and stereoselectivity. The reaction with terminal alkyne yields linear E-alkenylphosphine oxide via neutral radical addition, while addition with internal ones generates cyclic benzophosphine oxides and hydrogen. Mechanistic studies on radical trapping experiments, electron spin resonance studies, and spectroscopic measurements confirm the formation of phosphinoyl radical and cobalt intermediates that are from capturing the electron and proton eliminated from H-phosphine oxide. The highlight of our mechanistic investigation is the dual role played by cobaloxime, viz., both as the visible light absorber to activate the P(O)-H bond as well as a hydrogen transfer agent to influence the reaction pathway. This synergetic feature of the cobaloxime catalyst preforming multiple functions under ambient condition provides a convergent synthetic approach to vinylphosphine oxides directly from H-phosphine oxides and alkenes (or alkynes).
机译:直接活化H-氧化膦与不饱和碳-碳键反应是获得烯基氧化膦的直接方法,这在合成和材料领域均显示出重要的应用。但是,通常需要昂贵的金属和强氧化剂才能实现转化。在这里,我们证明了在可见光照射下,地球上富含钴的肟能够将H-氧化膦转化成其反应性自由基。如此产生的自由基物质可用于官能化烯烃和炔烃,而无需任何外部光敏剂和氧化剂。与末端烯烃的偶联产生具有优异的化学和立体选择性的E-烯基氧化膦。与末端炔烃的反应通过中性自由基加成反应生成线性E-烯基氧化膦,而与内部炔烃的加成生成环状苯并膦氧化物和氢。自由基捕获实验,电子自旋共振研究和光谱测量的机理研究证实了膦酰基自由基和钴中间体的形成是由于捕获了从H-氧化膦中消除的电子和质子。我们的机理研究的重点是钴肟的双重作用,即既作为可见光吸收剂激活P(O)-H键,又作为氢转移剂影响反应路径。 Cobaloxime催化剂在环境条件下具有多种功能的协同作用为直接从H-膦氧化物和烯烃(或炔烃)合成乙烯基膦氧化物提供了一种收敛的合成方法。

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  • 来源
    《Journal of the American Chemical Society》 |2019年第35期|13941-13947|共7页
  • 作者单位

    Chinese Acad Sci Tech Inst Phys & Chem Key Lab Photochem Convers & Optoelect Mat Beijing 100190 Peoples R China|Univ Chinese Acad Sci Sch Future Technol Beijing 100049 Peoples R China;

    Bowling Green State Univ Ctr Photochem Sci Bowling Green OH 43403 USA|Bowling Green State Univ Dept Chem Bowling Green OH 43403 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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