Fluorescent 5H‐Pyrano[3,2‐c]chromenes: Synthesis, Photophysical Properties and Sensing of Nucleophilic Anions

Author:

Chernov Nikita M.1ORCID,Panov Maxim S.12,Domotskaya Mariya Yu.1,Spiridonova Dar'ya V.2,Chistyi Leonid S.3,Shutov Roman V.1,Nikolaev Dmitrii M.4,Ryazantsev Mikhail N.5,Yakovlev Igor P.1

Affiliation:

1. Department of Organic Chemistry St. Petersburg State Chemical Pharmaceutical University 14 Prof. Popov st. St. Petersburg 197376 Russia

2. Institute of Chemistry Saint Petersburg State University 26 Universitetskii pr St. Petersburg 198504 Russia

3. Research Institute of Hygiene, Occupational Pathology and Human Ecology FMBA bld. 93 p.o. Kuz'molovsky Leningrad Region 188663 Russia

4. Institute of Biomedical Systems and Biotechnologies Peter the Great St. Petersburg Polytechnic University 29 Polytechnicheskaya Str. St. Petersburg 195251 Russia

5. Smorodintsev Research Institute of Influenza 15/17, Prof. Popov str. St. Petersburg 197376 Russia

Abstract

AbstractWe report the development of a convenient organocatalytic method for the synthesis of 5H‐pyrano[3,2‐c]chromenes from chromone‐containing acrylates and ethyl cyanoacetate. The synthesis is characterized by simple conditions (ethanol, basic catalysis) and good yields (up to 90 %). The synthesized pyrano[3,2‐c]chromenes are a promising new class of fluorescent compounds. They have intense fluorescence in the yellow‐green region of the spectrum (495–554 nm) with high quantum yields (up to 72 %) and exhibit large Stokes shifts (3514–5856 cm−1). We have demonstrated the possible application of the obtained pyrano[3,2‐c]chromenes as selective “turn‐off” sensors for nucleophilic anions, such as cyanide, sulfide and sulfite.

Funder

Ministry of Health of the Russian Federation

Ministry of Science and Higher Education of the Russian Federation

Publisher

Wiley

Subject

General Chemistry

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