Rhodium-catalyzed annulation of pyrrole substituted BODIPYs with alkynes to access π-extended polycyclic heteroaromatic molecules and NIR absorption
文献情報
Bixiang Zhou, Mengjie Guo, Qingjie Pan, Mingbo Zhou, Ling Xu, Yutao Rao, Kaisheng Wang, Bangshao Yin, Jie Zhou, Jianxin Song
A series of π-extended BODIPY derivatives fused with an indolizine scaffold were prepared smoothly via rhodium-catalyzed C–H functionalization/annulation with excellent chemoselectivity and regioselectivity, where the pyrrole moiety serves as a directing group. The resulting BODIPY dimer was selectively constructed by FeCl3-mediated intermolecular oxidative aromatic coupling of its precursor at the α-position of the pyrrole unit, exhibiting the maximum absorption wavelength at 947 nm. The structures of two representative BODIPY monomers and the BODIPY dimer were unambiguously confirmed by X-ray crystallographic analysis. These fluorophores show significantly red-shifted absorption compared with their corresponding precursors and reported BODIPY analogues, reaching the near infrared (NIR) spectral region. Meanwhile, these diindolizine-fused BODIPYs display large Stokes shifts. Electrochemical properties were determined and DFT calculations were also performed to deepen our understanding of the electronic structures and spectral properties of these new BODIPYs.
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Organic Chemistry Frontiers publishes high-quality research from across organic chemistry. Emphases are placed on studies that make significant contributions to the field of organic chemistry by reporting either new or significantly improved protocols or methodologies. Topics include, but are not limited to the following: Organic synthesis Development of synthetic methodologies Catalysis Natural products Functional organic materials Supramolecular and macromolecular chemistry Physical and computational organic chemistry














