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      Photoredox-Mediated Routes to Radicals: The Value of Catalytic Radical Generation in Synthetic Methods Development

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          Abstract

          Photoredox catalysis has experienced a revitalized interest from the synthesis community during the past decade. For example, photoredox/Ni dual catalysis protocols have been developed to overcome several inherent limitations of palladium-catalyzed cross-couplings by invoking a single-electron transmetalation pathway. This Perspective highlights advances made by our laboratory since the inception of the photoredox/Ni cross-coupling of benzyltrifluoroborates with aryl bromides. In addition to broadening the scope of trifluoroborate coupling partners, research using readily oxidized hypervalent silicates as radical precursors that demonstrate functional group compatibility is highlighted. The pursuit of electrophilic coupling partners beyond (hetero)aryl bromides has also led to the incorporation of several new classes of C(sp 2)-hybridized substrates into light-mediated cross-coupling. Advances to expand the radical toolbox by utilizing feedstock chemicals (e.g., aldehydes) to access radicals that were previously inaccessible from trifluoroborates and silicates are also emphasized. Additionally, several organic photocatalysts have been investigated as replacements for their expensive iridium- and ruthenium-based counterparts. Lastly, the net C–H functionalization of the radical partner in an effort to improve atom economy is presented. An underlying theme in all of these studies is the value of generating radicals in a catalytic manner, rather than stoichiometrically.

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          Author and article information

          Journal
          ACS Catal
          ACS Catal
          cs
          accacs
          ACS Catalysis
          American Chemical Society
          2155-5435
          14 March 2017
          07 April 2017
          14 March 2018
          : 7
          : 4
          : 2563-2575
          Affiliations
          [1]Roy and Diana Vagelos Laboratories, Department of Chemistry, University of Pennsylvania , Philadelphia, Pennsylvania 19104-6323, United States
          Author notes
          Article
          10.1021/acscatal.7b00094
          5388068
          28413692
          8c18f3f2-4f10-409b-b1ee-9eec3856fd15
          Copyright © 2017 American Chemical Society

          This is an open access article published under an ACS AuthorChoice License, which permits copying and redistribution of the article or any adaptations for non-commercial purposes.

          History
          : 11 January 2017
          : 17 February 2017
          Categories
          Perspective
          Custom metadata
          cs7b00094
          cs-2017-00094j

          photoredox,catalysis,cross-coupling,radicals,nickel,dual catalysis

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