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Postfunctionalization of the BODIPY Core: Synthesis and Spectroscopy

European Journal of Organic Chemistry · 2015 · Vol. 2015(30) · pp. 6577–6595
Noël BoensBram VerbelenWim Dehaen

Abstract

Abstract In this review we describe the various new methodologies for synthetic postmodification of the BODIPY core designed and developed by our research groups, as well as their electronic spectroscopic properties. We discuss the different strategies created for functionalization of the BODIPY framework at the pyrrole C‐ring positions and the meso ‐position. Halogenated boron dipyrrins are substrates for nucleophilic substitution or Pd‐catalyzed cross‐coupling reactions. α‐Unsubstituted BODIPYs can be functionalized with N and C nucleophiles through oxidative or vicarious nucleophilic substitution (VNS) of the α‐hydrogen atoms. Combining this methodology with reversible Michael addition onto nitrostyrenes provides a route to 3‐styrylated BODIPYs. Furthermore, the one‐step, Pd‐catalyzed C–H arylation of 3,5‐unsubstituted BODIPYs leads to 3‐ and 3,5‐arylated dyes. Finally, radical C–H arylation at the 3,5‐positions of α‐unsubstituted BODIPYs provides an additional synthesis route to arylated dyes.

Luminescence and Fluorescent MaterialsPorphyrin and Phthalocyanine ChemistryMolecular Sensors and Ion DetectionBODIPYChemistryNucleophilePyrroleCombinatorial chemistryNucleophilic substitutionRing (chemistry)Nucleophilic aromatic substitutionPhotochemistryCatalysis
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References
Fluorescent indicators based on BODIPY
Chemical Society Reviews · 2011 · 2,218 citations
The chemistry of Bodipy: A new El Dorado for fluorescence tools
New Journal of Chemistry · 2007 · 928 citations
BODIPY dyes in photodynamic therapy
Chemical Society Reviews · 2012 · 2,028 citations
The Chemistry of Fluorescent Bodipy Dyes: Versatility Unsurpassed
Angewandte Chemie International Edition · 2007 · 3,075 citations
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