Department of Chemistry, M. V. Lomonosov Moscow State University, Leninskie Gory 1-3, Moscow, 119991, Russian Federation.
N. N. Semenov Institute of Chemical Physics, Russian Academy of Sciences, Kosygina Str. 4, Moscow, 119991, Russian Federation.
Photochem Photobiol Sci. 2021 Nov;20(11):1419-1428. doi: 10.1007/s43630-021-00103-0. Epub 2021 Sep 29.
A series of pyridyl (pyridinium) substituted benzoxazoles were studied by steady state absorption, fluorescence spectroscopy, time-resolved fluorescence spectroscopy, fs pulse absorption and polarization spectroscopy, and quantum-chemical calculations. The spectral and kinetic parameters of the fluorophores in MeCN and EtOAc were obtained experimentally and were calculated by means of DFT and TDDFT methods. A scheme including four transient excited states was proposed for the interpretation of differential absorption kinetics of the charged fluorophores. Expressions describing the actual kinetics graphs, the decay associated spectra, and the species-associated spectra were derived. The charge shift step was found to be dependent on average solvation times. A charge shift followed by the formation of the twisted conformer was found for the excited 1-ethyl-3-(5-phenyloxazol-2-yl)pyridinium 4-methyl-1-benzenesulfonate in MeCN and EtOAc. Conformational analysis confirms a large amplitude motion of the meta-substituted ethylpyridinium group as an additional structural relaxation path producing an abnormally large fluorescence Stokes shift.
一系列吡啶基(吡啶鎓)取代的苯并恶唑通过稳态吸收、荧光光谱、时间分辨荧光光谱、fs 脉冲吸收和偏振光谱以及量子化学计算进行了研究。在 MeCN 和 EtOAc 中,通过实验获得了荧光团的光谱和动力学参数,并通过 DFT 和 TDDFT 方法进行了计算。提出了一个包括四个瞬态激发态的方案,以解释带电荧光团的差分吸收动力学。推导出了描述实际动力学图、衰减相关光谱和物种相关光谱的表达式。发现电荷转移步骤取决于平均溶剂化时间。在 MeCN 和 EtOAc 中,1-乙基-3-(5-苯并恶唑-2-基)吡啶鎓 4-甲基-1-苯磺酸盐的激发态发生了电荷转移,随后形成了扭曲的构象。构象分析证实,取代的间位乙基吡啶鎓基团的大幅度运动是产生异常大的荧光斯托克斯位移的另一个结构弛豫途径。