A Lewis Base Catalysis Approach for the Photoredox Activation of Boronic Acids and Esters

We report herein the use of a dual catalytic system comprising a Lewis base catalyst such as quinuclidin-3-ol or 4-dimethylaminopyridine and a photoredox catalyst to generate carbon radicals from either boronic acids or esters. This system enabled a wide range of alkyl boronic esters and aryl or alk...

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Veröffentlicht in:Angewandte Chemie - International Edition 2017-10, Vol.56 (47), p.15136-15140
Hauptverfasser: Lima, Fabio, Sharma, Upendra Kumar, Grunenberg, Lars, Saha, Debasmita, Johannsen, Sandra, Sedelmeier, Joerg, Van der Eycken, Erik, Victor Ley, Steven
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Sprache:eng
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Zusammenfassung:We report herein the use of a dual catalytic system comprising a Lewis base catalyst such as quinuclidin-3-ol or 4-dimethylaminopyridine and a photoredox catalyst to generate carbon radicals from either boronic acids or esters. This system enabled a wide range of alkyl boronic esters and aryl or alkyl boronic acids to react with electron-deficient olefins via radical addition to efficiently form C-C coupled products in a redox-neutral fashion. The Lewis base catalyst was shown to form a redox-active complex with either the boronic esters or the trimeric form of the boronic acids (boroxines) in solution.
ISSN:1433-7851