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Donor–Acceptor Fluorophores for Visible-Light-Promoted Organic Synthesis: Photoredox/Ni Dual Catalytic C(sp<sup>3</sup>)–C(sp<sup>2</sup>) Cross-Coupling

ACS Catalysis · 2016 · Vol. 6(2) · pp. 873–877
Jian LuoJian Zhang

Abstract

We describe carbazolyl dicyanobenzene (CDCB)-based donor–acceptor (D–A) fluorophores as a class of cheap, easily accessible, and efficient metal-free photoredox catalysts for organic synthesis. By changing the number and position of carbazolyl and cyano groups on the center benzene ring, CDCBs with a wide range of photoredox potentials are obtained to effectively drive the energetically demanding C(sp3)–C(sp2) cross-coupling of carboxylic acids and alkyltrifluoroborates with aryl halides via a photoredox/Ni dual catalysis mechanism. This work validates the utility of D–A fluorophores in guiding the rational design of metal-free photoredox catalysts for visible-light-promoted organic synthesis.

Radical Photochemical ReactionsSulfur-Based Synthesis TechniquesCatalytic C–H Functionalization MethodsPhotoredox catalysisCatalysisPhotochemistryChemistryArylAcceptorVisible spectrumBenzeneCombinatorial chemistryPhotocatalysis

Funding

  • University of Nebraska-Lincoln
Citations
823
FWCI
59.93
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100%
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References
Organic synthetic transformations using organic dyes as photoredox catalysts
Organic & Biomolecular Chemistry · 2014 · 472 citations
Visible light photoredox catalysis: applications in organic synthesis
Chemical Society Reviews · 2010 · 4,059 citations
Visible‐Light Photoredox Catalysis
Angewandte Chemie International Edition · 2012 · 2,216 citations
Synthetic applications of eosin Y in photoredox catalysis
Chemical Communications · 2014 · 1,034 citations
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