ISSN 2522-4468

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dc.contributor.authorStanishevsky, Ivan Viacheslavovich-
dc.contributor.authorArabei, Sergey Mikhailovich-
dc.contributor.authorChernyavskii, Valerii Antonovich-
dc.contributor.authorSolovyev, Konstantin Nikolayevich-
dc.contributor.authorСтанишевский, Иван Вячеславович-
dc.contributor.authorАрабей, Сергей Михайлович-
dc.contributor.authorЧернявский, Валерий Антонович-
dc.contributor.authorСоловьев, Константин Николаевич-
dc.date.accessioned2023-11-10T09:03:58Z-
dc.date.available2023-11-10T09:03:58Z-
dc.date.issued2016-
dc.identifier.citationCharacterization of the T1 State of Porphyrin Molecules on the Basis of Numerical Modeling of Decrease and Increase of Fluorescence Intensity Kinetics = Характеристика Т1-состояния молекул порфиринов на основе численного моделирования кинетики снижения и увеличения интенсивности флуоресценции / I. V. Stanishevsky [и др.] // Optics and Spectroscopy. - 2016. - Vol. 121. - N. 5. - P. 722-728. DOI: 10.1134/S0030400X16110199ru_RU
dc.identifier.urihttps://rep.bsatu.by/handle/doc/20178-
dc.description.abstractFor a number of porphyrin molecules, it was shown that their excitation by light pulses of a rectangular step shape and a certain duration led to experimentally observed dynamical decrease and increase of fluorescence kinetics due to changes in the population of the lower (metastable) triplet T1 state. On the basis of exact analytical expressions for a three-energy-level model, a simple analytical relationships between the rate constants of intramolecular processes and experimentally measured parameters of the fluorescence kinetics were obtained. The three-dimensional isotropic orientation of the molecules in the framework of the chosen model was taken into account by numerical methods and allowed to simulate adequately the experimentally observed fluorescence kinetics. The T1 state lifetimes of the studied porphyrin molecules in polymer matrices were determined from experimental curves using numerical methods for solving inverse problems. The obtained values correlated with literature data. Features and advantages of this approach were discussed.ru_RU
dc.language.isoenru_RU
dc.subjectporphyrin moleculesru_RU
dc.subjectfluorescenceru_RU
dc.subjectT1 triplet stateru_RU
dc.subjectмолекулы порфиринаru_RU
dc.subjectфлуоресценцияru_RU
dc.subjectтриплетное состояние Т1ru_RU
dc.titleCharacterization of the T1 State of Porphyrin Molecules on the Basis of Numerical Modeling of Decrease and Increase of Fluorescence Intensity Kineticsru_RU
dc.title.alternativeХарактеристика Т1-состояния молекул порфиринов на основе численного моделирования кинетики снижения и увеличения интенсивности флуоресценцииru_RU
dc.identifier.udc535.37-
dc.identifier.udc004.942-
dc.relation.bookOptics and Spectroscopyru_RU
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