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Исследование стабильности цинковых комплексов дипиррометенов в протонодонорных средах А. А. Прокопенко

By: Прокопенко, Александр АнатольевичMaterial type: ArticleArticleOther title: Researching оf stability of zinc dipyrromethene complexes in protic media [Parallel title]Subject(s): оптические устройства | лиганды | тонкослойная хроматография | ИК-спектроскопия | экспериментальные данные | цинк | протонирование | дипиррометенаты цинкаGenre/Form: статьи в сборниках Online resources: Click here to access online In: Перспективы развития фундаментальных наук. Т. 2 : сборник научных трудов XV Международной конференции студентов, аспирантов и молодых ученых, 24–27 апреля 2018 г Т. 2 : Химия. С. 270-272Abstract: At present a study of complexes of dipyrromethene complexes with different structure is one of the most successfully developing areas of modem chemistry. The most perspective members of this family are boron fluorinated complexes of dipyrromethenes (BODIPY). Depending on the stmcture of the ligand and a solvent, they have optimal characteristics for the fluorophores: high fluorescence quantum yield, a good photostability. Also, dipyrromethene can form stable complexes with ions of d-elements, such as Zn(ll). The main advantage complexes ofZn(ll) with dipyrromethens is easy to "self-assembly" in the "soft" conditions on complexing ions in solutions and in biological systems, as well as high sensitivity spectral-luminescence characteristics to changes in the stmcture of the chromophore and the nature of the solvent. Systematic observation of photochemical and photophysical properties and establishment of their connection with stmctural features of the complexes are required for successful usage of dipyrromethene complexes and creation of various hi-tech optical devices which are based on them. Therefore, the purpose of the work is to study the spectral-luminescent properties and stability in protic media of different complexes of dipyrromethenes with zinc the optimal combination of which will indicate the direction of the most effective use of these dyes. For successful application of such complexes need to know something of their behaviors in different solvents, including when acids and alkalides are present, since the stabilities of fluorophores in acidic/alkaline media are closely related to their applicabilities. The complexes stabilities in the ground and excited states are estimated by spectrophotometric titration of ethanol solutions of compounds using water-ethanol solutions of hydrochloric acid.
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At present a study of complexes of dipyrromethene complexes with different structure is one of the most successfully developing areas of modem chemistry. The most perspective members of this family are boron fluorinated complexes of dipyrromethenes (BODIPY). Depending on the stmcture of the ligand and a solvent, they have optimal characteristics for the fluorophores: high fluorescence quantum yield, a good photostability.
Also, dipyrromethene can form stable complexes with ions of d-elements, such as Zn(ll). The main advantage complexes ofZn(ll) with dipyrromethens is easy to "self-assembly" in the "soft" conditions on complexing ions in solutions and in biological systems, as well as high sensitivity spectral-luminescence characteristics to changes in the stmcture of the chromophore and the nature of the solvent. Systematic observation of photochemical and photophysical properties and establishment of their connection with stmctural features of the complexes are required for successful usage of dipyrromethene complexes and creation of various hi-tech optical devices which are based on them. Therefore, the purpose of the work is to study the spectral-luminescent properties and stability in protic media of different complexes of dipyrromethenes with zinc the optimal combination of which will indicate the direction of the most effective use of these dyes. For successful application of such complexes need to know something of their behaviors in different solvents, including when acids and alkalides are present, since the stabilities of fluorophores in acidic/alkaline media are closely related to their applicabilities. The complexes stabilities in the ground and excited states are estimated by spectrophotometric titration of ethanol solutions of compounds using water-ethanol solutions of hydrochloric acid.

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