Absorption and Luminescence Properties of Bis-thiacarbocyanine in the Presence of Cucurbit[7,8]urils in Water

IF 1.1 4区 化学 Q4 CHEMISTRY, PHYSICAL
T. V. Fedotova, G. V. Zakharova,  A. K. Chibisov
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引用次数: 0

Abstract

The effect of cucurbit[7,8]urils on the absorption and luminescent properties of bis-thiacarbocyanine (bis-TCC) based on 3,3'-dimethylthiacarbocyanine (TCC) perchlorate in water was studied. The existence of two forms of bis-TCC that absorb in the long-wavelength and short-wavelength ranges was established. The properties of the form absorbing in the long-wavelength region are similar to those of the TCC monomer (monomer form), whereas the form absorbing in the short-wavelength region exhibits the properties of the non-fluorescent TCC dimer (dimer form). The effect of cucurbit[7,8]urils was manifested as shifts of the absorption and fluorescence maxima, increase in the fluorescence intensity of both the monomer and the dimer forms, and the presence of thermally activated delayed fluorescence of the dimer form in deoxygenated solutions at room temperature. The results derived from spectral and luminescent measurements indicate the ability of bis-TCC to form complexes with cucurbit[7,8]urils.

Abstract Image

瓜[7,8]尾纤存在下双硫碳菁在水中的吸收和发光特性
研究了葫芦[7,8]尾鳍对3,3′-二甲基硫碳菁(TCC)高氯酸盐基双硫碳菁(bis-TCC)在水中的吸收和发光性能的影响。确定了双- tcc在长波和短波吸收两种形式的存在。长波长区域的形式吸收性质与TCC单体(单体形式)相似,而短波长区域的形式吸收具有非荧光TCC二聚体(二聚体形式)的性质。葫芦[7,8]的影响表现为吸收和荧光最大值的变化,单体和二聚体形式的荧光强度都增加,二聚体形式在室温下脱氧溶液中存在热激活的延迟荧光。光谱和发光测量的结果表明,双- tcc能够与葫芦[7,8]尾翼形成配合物。
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来源期刊
Doklady Physical Chemistry
Doklady Physical Chemistry 化学-物理化学
CiteScore
1.50
自引率
0.00%
发文量
9
审稿时长
6-12 weeks
期刊介绍: Doklady Physical Chemistry is a monthly journal containing English translations of current Russian research in physical chemistry from the Physical Chemistry sections of the Doklady Akademii Nauk (Proceedings of the Russian Academy of Sciences). The journal publishes the most significant new research in physical chemistry being done in Russia, thus ensuring its scientific priority. Doklady Physical Chemistry presents short preliminary accounts of the application of the state-of-the-art physical chemistry ideas and methods to the study of organic and inorganic compounds and macromolecules; polymeric, inorganic and composite materials as well as corresponding processes. The journal is intended for scientists in all fields of chemistry and in interdisciplinary sciences.
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