Copper(I) Photocatalyzed Bromonitroalkylation of Olefins: Evidence for Highly Efficient Inner‐Sphere Pathways

Author:

Reichle Alexander1,Koch Magdalena1,Sterzel Hannes1,Großkopf Lea‐Joy1,Floss Johannes1,Rehbein Julia1ORCID,Reiser Oliver1ORCID

Affiliation:

1. Fakultät Chemie & Pharmazie Universität Regensburg Universitätsstr. 31 93053 Regensburg Germany

Abstract

AbstractWe report the visible light‐mediated copper‐catalyzed vicinal difunctionalization of olefins utilizing bromonitroalkanes as ATRA reagents. This protocol is characterized by high yields and fast reaction times under environmentally benign reaction conditions with exceptional scope, allowing the rapid functionalization of both activated and unactivated olefins. Moreover, late‐stage functionnalization of biologically active molecules and upscaling to gram quantities is demonstrated, which offers manifold possibilities for further transformations, e.g. access to nitro‐ and aminocyclopropanes. Besides the synthetic utility of the title transformation, this study undergirds the exclusive role of copper in photoredox catalysis showing its ability to stabilize and interact with radical intermediates in its coordination sphere. EPR studies suggest that such interactions can even outperform a highly favorable cyclization of transient to persistent radicals contrasting iridium‐based photocatalysts.

Funder

Deutsche Forschungsgemeinschaft

Fonds der Chemischen Industrie

Publisher

Wiley

Subject

General Chemistry,Catalysis

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