Photophysical properties of BODIPYs with sterically-hindered nitrophenyls in meso-position
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N.N. Vorozhtsov Novosibirsk Institute of Organic Chemistry
of Siberian Branch of Russian Academy of Sciences

The article with participation of NIOCh's researchers is published in  Journal of Luminescence (IF 3,599

Photophysical properties of BODIPYs with sterically-hindered nitrophenyls in meso-position

Mikhail A.Panfilov, Tatyana Yu. Karogodina, Yao Songyin, Oleg Yu. Karmatskih, Alexey Yu. Vorob'ev, Irina S.Tretyakova, Evgeni M.Glebov, Alexander E.Moskalensky

Journal of Luminescence, V. 246, June 2022, 118837

Available online 22 March 2022



 https://doi.org/10.1016/j.jlumin.2022.118837


Highlights

  • We describe a new family of BODIPY dyes with sterically-hindered nitrophenyls in meso-position.

  • Photonic properties of novel compounds are characterized, including the fluorescent quantum yield and lifetime and photoinduced singlet oxygen luminescence.

  • Drastically different results are obtained for molecules with only small changes in substituents.

  • The influence of molecular structure on the optical properties is investigated and explained with quantum chemical calculations.


 

Abstract

During recent years, the BODIPY core became a popular scaffold for designing of dyes with desirable properties. In this paper, we extend the library of possible modification of BODIPYs, presenting experimental data for a new family meso-substituted with nitrophenyl groups. We also present quantum chemical calculations, which complement the experimental data and give additional insight in the underlying photochemical and photophysical processes. Optical properties of novel compounds are characterized. It is shown that the fluorescence quantum yield and the efficiency of singlet oxygen generation differs by two orders of magnitude across the family. In aqueous solution, red-shifted fluorescence emission band is detected, corresponding to aggregates. This band has shorter decay time and wide excitation spectrum. We show that photolysis is not accompanied by the release of nitric oxide (NO) which was observed earlier for some dyes with nitrophenyl substituents. The experimental data presented in this paper may be useful for further designing of BODIPY dyes and NO photodonors.

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