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Hydrogen Atom Transfer (HAT): A Versatile Strategy for Substrate Activation in Photocatalyzed Organic Synthesis

机译:氢原子转移(HAT):光催化有机合成中底物活化的多功能策略

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摘要

The adoption of hydrogen atom transfer (HAT) in a photocatalytic approach, in which an excited catalyst is responsible for substrate activation, offers unique opportunities in organic synthesis, enabling the straightforward activation of R–H (R = C, Si, S) bonds in desired reagents. Either a direct strategy, based on the intrinsic reactivity of a limited number of photocatalysts in the excited state, or an indirect one, in which a photocatalytic cycle is used for the generation of a thermal hydrogen abstractor, can be exploited. This microreview summarizes the most recent advances (mainly from the last two years) in this rapidly developing area of research, collecting the selected examples according to the nature of the species promoting the HAT process. From the synthetic point of view, this area has led to the development of a plethora of strategies for C–C, C–Si, C–N, C–S, and C–halogen (particularly, fluorine) bond formation, as well as for oxidation reactions.
机译:在光催化方法中采用氢原子转移(HAT),其中激发的催化剂负责底物的活化,为有机合成提供了独特的机会,从而可以直接活化R–H(R = C,Si,S)键在所需的试剂中。可以采用基于有限数量的处于激发态的光催化剂的固有反应性的直接策略,也可以采用间接的策略,其中将光催化循环用于生成热氢抽象剂。这份微综述总结了这个快速发展的研究领域中的最新进展(主要是最近两年),并根据促进HAT过程的物种的性质收集了选定的实例。从综合的角度来看,这一领域导致了形成C–C,C–Si,C–N,C–S和C–卤素(尤其是氟)键形成的多种策略的发展。至于氧化反应。

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