Atom Transfer Radical Addition via Dual Photoredox/Manganese Catalytic System

Atom transfer radical addition of bromonitromethane and 1,2-dibromotetrafluoroethane to alkenes is described. The reaction is performed under blue light irradiation using two catalysts: 4CzIPN and manganese (II) bromide. The cyanoarene photocatalyst serves for the redox activation of starting organi...

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Main Authors: Vladislav S. Kostromitin, Vitalij V. Levin, Alexander D. Dilman
Format: Article
Language:English
Published: MDPI AG 2023-07-01
Series:Catalysts
Subjects:
Online Access:https://www.mdpi.com/2073-4344/13/7/1126
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author Vladislav S. Kostromitin
Vitalij V. Levin
Alexander D. Dilman
author_facet Vladislav S. Kostromitin
Vitalij V. Levin
Alexander D. Dilman
author_sort Vladislav S. Kostromitin
collection DOAJ
description Atom transfer radical addition of bromonitromethane and 1,2-dibromotetrafluoroethane to alkenes is described. The reaction is performed under blue light irradiation using two catalysts: 4CzIPN and manganese (II) bromide. The cyanoarene photocatalyst serves for the redox activation of starting organic bromide, while the manganese salt facilitates the trapping of the alkyl radical with the formation of the carbon–bromine bond.
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spelling doaj.art-a80a69a40e2c4a54a65168fd0f135d7a2023-11-18T18:45:08ZengMDPI AGCatalysts2073-43442023-07-01137112610.3390/catal13071126Atom Transfer Radical Addition via Dual Photoredox/Manganese Catalytic SystemVladislav S. Kostromitin0Vitalij V. Levin1Alexander D. Dilman2N. D. Zelinsky Institute of Organic Chemistry, Leninsky Prosp. 47, 119991 Moscow, RussiaN. D. Zelinsky Institute of Organic Chemistry, Leninsky Prosp. 47, 119991 Moscow, RussiaN. D. Zelinsky Institute of Organic Chemistry, Leninsky Prosp. 47, 119991 Moscow, RussiaAtom transfer radical addition of bromonitromethane and 1,2-dibromotetrafluoroethane to alkenes is described. The reaction is performed under blue light irradiation using two catalysts: 4CzIPN and manganese (II) bromide. The cyanoarene photocatalyst serves for the redox activation of starting organic bromide, while the manganese salt facilitates the trapping of the alkyl radical with the formation of the carbon–bromine bond.https://www.mdpi.com/2073-4344/13/7/1126atom transferradical reactionsorganofluorinephotocatalysis
spellingShingle Vladislav S. Kostromitin
Vitalij V. Levin
Alexander D. Dilman
Atom Transfer Radical Addition via Dual Photoredox/Manganese Catalytic System
Catalysts
atom transfer
radical reactions
organofluorine
photocatalysis
title Atom Transfer Radical Addition via Dual Photoredox/Manganese Catalytic System
title_full Atom Transfer Radical Addition via Dual Photoredox/Manganese Catalytic System
title_fullStr Atom Transfer Radical Addition via Dual Photoredox/Manganese Catalytic System
title_full_unstemmed Atom Transfer Radical Addition via Dual Photoredox/Manganese Catalytic System
title_short Atom Transfer Radical Addition via Dual Photoredox/Manganese Catalytic System
title_sort atom transfer radical addition via dual photoredox manganese catalytic system
topic atom transfer
radical reactions
organofluorine
photocatalysis
url https://www.mdpi.com/2073-4344/13/7/1126
work_keys_str_mv AT vladislavskostromitin atomtransferradicaladditionviadualphotoredoxmanganesecatalyticsystem
AT vitalijvlevin atomtransferradicaladditionviadualphotoredoxmanganesecatalyticsystem
AT alexanderddilman atomtransferradicaladditionviadualphotoredoxmanganesecatalyticsystem