Publication Type Journal Article
Title Triplet Excited States and Singlet Oxygen Production by Analogs of Red Wine Pyranoanthocyanins
Authors Gustavo Thalmer M. Silva Suma S. Thomas Cassio Pacheco Silva Jan C. Schlothauer Mauricio S. Baptista Adilson Alves de Freitas Cornelia Bohne Frank H. Quina
Groups MET
Journal PHOTOCHEMISTRY AND PHOTOBIOLOGY
Year 2019
Month January
Volume 95
Number 1
Pages 176-182
Abstract During the maturation of red wines, the anthocyanins of grapes are transformed into pyranoanthocyanins, which possess a pyranoflavylium cation as their basic chromophore. Photophysical properties of the singlet and triplet excited states of a series of synthetic pyranoflavylium cations were determined at room temperature in acetonitrile solution acidified with 0.10 mol dm(-3) trifluoroacetic acid (TFA, to inhibit competitive excited state proton transfer) and at 77 K in a rigid TFA-acidified isopropanol glass. In solution, the triplet states of these pyranoflavylium cations are efficiently quenched by molecular oxygen, resulting in sensitized formation of singlet oxygen, as confirmed by direct detection of the triplet-state decay by laser flash photolysis and of singlet oxygen monomol emission in the near infrared. The strong visible light absorption, the relatively small singlet-triplet energy differences, the excited state redox potentials and the reasonably long lifetimes of pyranoflavylium triplet states in the absence of molecular oxygen suggest that they might be useful as triplet sensitizers and/or as cationic redox initiators in polar aprotic solvents like acetonitrile.
DOI http://dx.doi.org/10.1111/php.12973
ISBN
Publisher
Book Title
ISSN 0031-8655
EISSN 1751-1097
Conference Name
Bibtex ID ISI:000456839400016
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