Spectral-kinetic studies of some homodimeric styrylcyanine dyes in solutions

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Аннотация

The spectral and kinetic characteristics of the dye Sbt ((E)-2-(4-(dimethylamino)styryl)-3-methylbenzo[d]thiazol-3-ium iodide) and its homodimers Dbt-5, Dbt-10 in chloroform and its binary mixtures with solvents of different polarity were studied. It was found that with an increase in the proportion of hexane in chloroform solutions of the studied dyes, non-fluorescent H-aggregates are formed. It was found that the spectral and photophysical parameters of the studied dyes depend on the polarity and viscosity of the solvents. Quantum-chemical calculations of the charge distribution and potential energy in the ground and excited states for the molecules of the studied compounds were carried out. Sbt and Dbt-10 dyes are characterized by higher values of quantum yields and lifetime of the excited state in a viscous medium, which is associated with the formation of the TICT (twisted intramolecular charge transfer) state. The transition of molecules to this state leads to effective quenching of fluorescence.

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Авторлар туралы

A. Yarmukhamedov

Samarkand State University named after Sh. Rashidov

Email: kurtaliev@rambler.ru
Өзбекстан, Samarkand

E. Kurtaliev

Samarkand State University named after Sh. Rashidov

Хат алмасуға жауапты Автор.
Email: kurtaliev@rambler.ru
Өзбекстан, Samarkand

I. Khairov

Samarkand State University named after Sh. Rashidov

Email: kurtaliev@rambler.ru
Өзбекстан, Samarkand

N. Nizomov

Samarkand State University named after Sh. Rashidov

Email: kurtaliev@rambler.ru
Өзбекстан, Samarkand

M. Malikov

Samarkand State University named after Sh. Rashidov

Email: kurtaliev@rambler.ru
Өзбекстан, Samarkand

Әдебиет тізімі

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Әрекет
1. JATS XML
2. Fig. 1. Quantum-chemical calculations of the structure and potential energies in the ground and excited states of the Sbt dye molecule: (a) optimized structure of the molecule in the ground state, (б) dependence of the potential energy on the angle φ in the ground and excited states, (в) distribution of electron density in the ground (HOMO) and excited (LUMO) states at different angles φ.

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3. Fig. 2. Absorption (a) and fluorescence (б) spectra of Sbt dye (c=10–5 M) in a mixture of binary solvents: 1 – chloroform, 2 – 1% chloroform+99% ethanol, 3 – 1% chloroform+99% DMF, 4 – 1% chloroform+99% dioxane, 5 – 1% chloroform+99% hexane.

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4. Fig. 3. Absorption (a) and fluorescence (b) spectra of Dbt-5 dyes in chloroform (c = 10–5 M) as different amounts of hexane were added: 1 – 0, 2 – 30%, 3 – 40%, 4 – 45%, 5 – 50%, 6 – 75% hexane.

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5. Fig. 4. Absorption (a) and fluorescence (б) spectra of Dbt-10 dye in chloroform (c = 10–5 M) as different amounts of hexane were added: 1 – 0, 2 – 50%, 3 – 60%, 4 – 70%, 5 – 99% hexane.

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6. Fig. 5. Kinetics of fluorescence decay of styrylcyanine dyes (a) Sbt, (б) Dbt-5, (в) Dbt-10: 1 – IRF, 2 – 1% chloroform+99% ethanol, 3 – chloroform, 4 – 1% chloroform+99% glycerol.

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7. Table 1-1

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8. Table 1-2

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9. Table 1-3

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