Chemoselective Radical
Dehalogenation and C–C
Bond Formation on Aryl Halide Substrates Using Organic Photoredox
Catalysts
Version 2 2016-08-15, 17:04Version 2 2016-08-15, 17:04
Version 1 2016-06-22, 17:52Version 1 2016-06-22, 17:52
Posted on 2016-06-08 - 00:00
Despite
the number of methods available for dehalogenation and
carbon–carbon bond formation using aryl halides, strategies
that provide chemoselectivity for systems bearing multiple carbon–halogen
bonds are still needed. Herein, we report the ability to tune the
reduction potential of metal-free phenothiazine-based photoredox catalysts
and demonstrate the application of these catalysts for chemoselective
carbon–halogen bond activation to achieve C–C cross-coupling
reactions as well as reductive dehalogenations. This procedure works
both for conjugated polyhalides as well as unconjugated substrates.
We further illustrate the usefulness of this protocol by intramolecular
cyclization of a pyrrole substrate, an advanced building block for
a family of natural products known to exhibit biological activity.
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Poelma, Saemi
O.; Burnett, G. Leslie; Discekici, Emre H.; Mattson, Kaila M.; Treat, Nicolas
J.; Luo, Yingdong; et al. (2016). Chemoselective Radical
Dehalogenation and C–C
Bond Formation on Aryl Halide Substrates Using Organic Photoredox
Catalysts. ACS Publications. Collection. https://doi.org/10.1021/acs.joc.6b01034