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Visible Light‐Promoted Beckmann Rearrangements: Separating Sequential Photochemical and Thermal Phenomena in a Continuous Flow Reactor

机译:可见光促进的贝克曼重排:在连续流反应器中分离顺序的光化学和热现象

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摘要

The Beckmann rearrangement of oximes to amides typically requires strong acids or highly reactive, hazardous electrophiles and/or elevated temperatures to proceed. A very attractive alternative is the in situ generation of Vilsmeier–Haack reagents, by means of photoredox catalysis, as promoters for the thermal Beckmann rearrangement. Investigation of the reaction parameters for this light‐induced method using a one‐pot strategy has shown that the reaction is limited by the different temperatures required for each of the two sequential steps. Using a continuous flow reactor, the photochemical and thermal processes have been separated by integrating a flow photoreactor unit at low temperature for the electrophile generation with a second reactor unit, at high temperature, where the rearrangement takes place. This strategy has enabled excellent conversions and yields for a diverse set of oximes, minimizing the formation of side products obtained with the original one‐pot method.
机译:肟的贝克曼重排为酰胺通常需要强酸或高反应性,危险的亲电试剂和/或高温才能进行。一个非常有吸引力的替代方法是通过光氧化还原催化原位生成Vilsmeier-Haack试剂,作为热贝克曼重排的促进剂。使用一锅法对该光诱导方法的反应参数进行研究表明,该反应受到两个连续步骤中每个步骤所需温度的限制。使用连续流动反应器,通过将用于生成亲电子试剂的低温流动光反应器单元与高温下发生重排的第二反应器单元集成在一起,将光化学过程和热过程分开。该策略可实现多种肟的出色转化率和收率,最大程度地减少了通过原始一锅法获得的副产物的形成。

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