Publikace: Photophysical and Electrochemiluminescence of Coumarin-Based Oxazaborines
ČlánekOmezený přístuppeer-reviewedpublished versionNačítá se...
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Mikysek, Tomáš
Nikolaou, Pavlos
Kafexholli, Mirjeta
Šimůnek, Petr
Váňa, Jiří
Markova, Aneta
Vala, Martin
Valenti, Giovanni
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Wiley-Blackwell
Abstrakt
We describe the synthesis, electrochemistry, photophysics, computational analysis and electrochemiluminescence (ECL) of a new series of oxazaborine molecules. Our strategy is based on the modification of the coumarin-oxazaborine moiety to be directly joined through a carbon-carbon bond, forming donor-acceptor (D-A) chromophores. These new structures substantially change the electron distribution as well as photophysical and electrochemical behaviors with a strong effect on the final quantum yield. For all compounds, we observed a very high PL quantum yield (70-75 %) and relatively accessible first oxidation and first reduction. All of these characteristics allow us to study the ECL of these molecules, obtaining a very high ECL efficiency that is four times higher than the standard dyes, opening the application of oxazaborine as bright ECL luminophores.
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Klíčová slova
electrochemiluminescence, molecular electrochemistry, oxazaborines, donor-acceptor chromophores, coumarin, elektrochemiluminiscence, molekulární elektrochemie, oxazaboriny, donor-akceptor chromofory, kumarin