Shaydyuk Yevgeniy O, Bashmakova Nataliia V, Klishevich George V, Dmytruk Andriy M, Kachkovsky Olexiy D, Kuziv Iaroslav B, Dubey Igor Ya, Belfield Kevin D, Bondar Mykhailo V
Institute of Physics National Academy of Sciences of Ukraine, Prospect Nauki, 46, Kyiv 03028, Ukraine.
Taras Shevchenko National University of Kyiv, Volodymyrska Street, 60, Kyiv 01601, Ukraine.
ACS Omega. 2023 Mar 16;8(12):11564-11573. doi: 10.1021/acsomega.3c00654. eCollection 2023 Mar 28.
Coumarin-based fluorescent agents play an important role in the manifold fundamental scientific and technological areas and need to be carefully studied. In this research, linear photophysics, photochemistry, fast vibronic relaxations, and two-photon absorption (2PA) of the coumarin derivatives, methyl 4-[2-(7-methoxy-2-oxo-chromen-3-yl)thiazol-4-yl]butanoate () and methyl 4-[4-[2-(7-methoxy-2-oxo-chromen-3-yl)thiazol-4-yl]phenoxy]butanoate (), were comprehensively analyzed using stationary and time-resolved spectroscopic techniques, along with quantum-chemical calculations. The steady-state one-photon absorption, fluorescence emission, and excitation anisotropy spectra, as well as 3D fluorescence maps of 3-hetarylcoumarins and were obtained at room temperature in solvents of different polarities. The nature of relatively large Stokes shifts (∼4000-6000 cm), specific solvatochromic behavior, weak electronic π → π* transitions, and adherence to Kasha's rule were revealed. The photochemical stability of and was explored quantitatively, and values of photodecomposition quantum yields, on the order of ∼10, were determined. A femtosecond transient absorption pump-probe technique was used for the investigation of fast vibronic relaxation and excited-state absorption processes in and , while the possibility of efficient optical gain was shown for in acetonitrile. The degenerate 2PA spectra of and were measured by an open aperture z-scan method, and the maximum 2PA cross-sections of ∼300 GM were obtained. The electronic nature of the hetaryl coumarins was analyzed by quantum-chemical calculations using DFT/TD-DFT level of theory and was found to be in good agreement with experimental data.
基于香豆素的荧光剂在众多基础科学和技术领域中发挥着重要作用,需要进行深入研究。在本研究中,采用稳态和时间分辨光谱技术以及量子化学计算,对香豆素衍生物4-[2-(7-甲氧基-2-氧代-色烯-3-基)噻唑-4-基]丁酸甲酯()和4-[4-[2-(7-甲氧基-2-氧代-色烯-3-基)噻唑-4-基]苯氧基]丁酸甲酯()的线性光物理、光化学、快速振动弛豫和双光子吸收(2PA)进行了全面分析。在室温下,于不同极性的溶剂中获得了3-杂芳基香豆素和的稳态单光子吸收、荧光发射和激发各向异性光谱以及三维荧光图谱。揭示了相对较大的斯托克斯位移(约4000 - 6000 cm)、特定的溶剂化显色行为、弱电子π → π*跃迁以及符合卡莎规则的性质。定量研究了和的光化学稳定性,并确定了光分解量子产率的值,约为10量级。利用飞秒瞬态吸收泵浦-探测技术研究了和中的快速振动弛豫和激发态吸收过程,同时在乙腈中显示了具有有效光学增益的可能性。通过开孔z扫描法测量了和的简并2PA光谱,获得了约300 GM的最大2PA截面。使用密度泛函理论/含时密度泛函理论(DFT/TD-DFT)水平的量子化学计算分析了杂芳基香豆素的电子性质,发现与实验数据吻合良好。