Tchaikovskaya Olga, Chaidonova Vlada, Bocharnikova Elena, Telminov Evgeny, Dmitrieva Natalia, Ezhov Dmitry
Departament of Physics, National Research Tomsk State University, Novosobornaya, 1, Tomsk, 634050, Russia.
Institute of Electrophysics, Ural Branch of the Russian Academy of Sciences, Yekaterinburg, 620146, Russia.
J Fluoresc. 2023 Mar;33(2):685-695. doi: 10.1007/s10895-022-03074-2. Epub 2022 Dec 9.
This investigation focuses on dyes that differ only in the nitro substituent. The NO group leads to a strong hardening of the fluorescence at 298 K. In methylene green (MG) the excitation energy migrates to the system of triplet states. This non-radiative process causes the MG fuorescence absent or too low compared to methylene blue (MB). Moreover, laser-induced fluorescence is completely absent for MG in the investigated solvents. However, at liquid nitrogen temperature, we recorded fluorescence for MG in ethanol 250 times higher than at room temperature and phosphorescence too. The intensity of the MB fluorescence band in ethanol at 77 K is 6 times higher than at room temperature. According to the results of this study, the lifetime in the excited state decreases in the following order: isopropanol > acetonitrile≈ethanol≈dimethyl sulfoxide > > water for MG and chloroform > acetonitrile≈ethanol≈dimethyl sulfoxide > > water≈isopropanol for MB. In addition, MG has phosphorescence in ethanol at 780 nm (12,800 cm) and in chloroform at 810 nm (12,300 cm).
本研究聚焦于仅在硝基取代基上存在差异的染料。硝基导致在298K时荧光强烈硬化。在亚甲基绿(MG)中,激发能迁移至三重态体系。这种无辐射过程导致MG荧光相较于亚甲基蓝(MB)缺失或过低。此外,在所研究的溶剂中,MG完全不存在激光诱导荧光。然而,在液氮温度下,我们记录到MG在乙醇中的荧光比室温下高250倍,同时也有磷光。77K时乙醇中MB荧光带的强度比室温下高6倍。根据本研究结果,激发态寿命按以下顺序递减:对于MG,异丙醇>乙腈≈乙醇≈二甲基亚砜>>水;对于MB,氯仿>乙腈≈乙醇≈二甲基亚砜>>水≈异丙醇。此外,MG在乙醇中于780nm(12,800cm)处有磷光,在氯仿中于810nm(12,300cm)处有磷光。