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有机化合物的光催化氟烷基化反应。

Photocatalytic fluoroalkylation reactions of organic compounds.

作者信息

Barata-Vallejo Sebastián, Bonesi Sergio M, Postigo Al

机构信息

Departamento de Química Orgánica, Facultad de Farmacia y Bioquímica, Universidad de Buenos Aires, Junín 954 CP 1113, Buenos Aires, Argentina.

Departamento de Química Orgánica, CIHIDECAR-CONICET, Pabellón II, 3er piso, Ciudad Universitaria, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, 1428, Buenos Aires, Argentina.

出版信息

Org Biomol Chem. 2015 Dec 14;13(46):11153-83. doi: 10.1039/c5ob01486g.

Abstract

Photocatalytic methods for fluoroalkyl-radical generation provide more convenient alternatives to the classical perfluoroalkyl-radical (Rf) production through chemical initiators, such as azo or peroxide compounds or the employment of transition metals through a thermal electron transfer (ET) initiation process. The mild photocatalytic reaction conditions tolerate a variety of functional groups and, thus, are handy to the late-stage modification of bioactive molecules. Transition metal-photocatalytic reactions for Rf radical generation profit from the redox properties of coordinatively saturated Ru or Ir organocomplexes to act as both electron donor and reductive species, thus allowing for the utilization of electron accepting and donating fluoroalkylating agents for Rf radical production. On the other hand, laboratory-available and inexpensive photoorgano catalysts (POC), in the absence of transition metals, can also act as electron exchange species upon excitation, resulting in ET reactions that produce Rf radicals. In this work, a critical account of transition metal and transition metal-free Rf radical production will be described with photoorgano catalysts, studying classical examples and the most recent investigations in the field.

摘要

用于生成氟烷基自由基的光催化方法为通过化学引发剂(如偶氮或过氧化物化合物)或通过热电子转移(ET)引发过程使用过渡金属来制备经典全氟烷基自由基(Rf)提供了更便捷的替代方法。温和的光催化反应条件能耐受多种官能团,因此便于生物活性分子的后期修饰。用于生成Rf自由基的过渡金属光催化反应受益于配位饱和的Ru或Ir有机配合物的氧化还原性质,它们既能作为电子供体又能作为还原物种,从而允许利用电子接受和供体氟烷基化试剂来生成Rf自由基。另一方面,实验室可用且价格低廉的光有机催化剂(POC)在没有过渡金属的情况下,在激发时也能作为电子交换物种,导致产生Rf自由基的ET反应。在这项工作中,将用光有机催化剂对过渡金属和无过渡金属的Rf自由基生成进行批判性阐述,研究该领域的经典实例和最新研究。

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