Modular and Selective Arylation of Aryl Germanes (C-GeEt 3 ) over C-Bpin, C-SiR 3 and Halogens Enabled by Light-Activated Gold Catalysis

Selective C -C couplings are powerful strategies for the rapid and programmable construction of bi- or multiaryls. To this end, the next frontier of synthetic modularity will likely arise from harnessing the coupling space that is orthogonal to the powerful Pd-catalyzed coupling regime. This report...

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Veröffentlicht in:Angewandte Chemie International Edition 2020-09, Vol.59 (36), p.15543-15548
Hauptverfasser: Sherborne, Grant J, Gevondian, Avetik G, Funes-Ardoiz, Ignacio, Dahiya, Amit, Fricke, Christoph, Schoenebeck, Franziska
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Sprache:eng
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Zusammenfassung:Selective C -C couplings are powerful strategies for the rapid and programmable construction of bi- or multiaryls. To this end, the next frontier of synthetic modularity will likely arise from harnessing the coupling space that is orthogonal to the powerful Pd-catalyzed coupling regime. This report details the realization of this concept and presents the fully selective arylation of aryl germanes (which are inert under Pd /Pd catalysis) in the presence of the valuable functionalities C-BPin, C-SiMe , C-I, C-Br, C-Cl, which in turn offer versatile opportunities for diversification. The protocol makes use of visible light activation combined with gold catalysis, which facilitates the selective coupling of C-Ge with aryl diazonium salts. Contrary to previous light-/gold-catalyzed couplings of Ar-N , which were specialized in Ar-N scope, we present conditions to efficiently couple electron-rich, electron-poor, heterocyclic and sterically hindered aryl diazonium salts. Our computational data suggest that while electron-poor Ar-N salts are readily activated by gold under blue-light irradiation, there is a competing dissociative deactivation pathway for excited electron-rich Ar-N , which requires an alternative photo-redox approach to enable productive couplings.
ISSN:1433-7851
1521-3773
DOI:10.1002/anie.202005066