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Deactivation channels of multidimensional 51 state of some laser dyes

机译:某些激光染料的多维51状态失活通道

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The photophysical properties of some donor-acceptor dye molecules such as trans-4-dimethylamino-4'-cyanostilbene(DCS) and its model bridged single bond derivative (DCSBS) and bridged double bond derivative (DCSBD)'with different degrees of flexibility were investigated. This work reports the effect of molecular structure as well as medium viscosity on the fluorescence properties, including fluorescence quantum yields, of this class of molecules. The result could be explained on the basis of a multidimensional excited state which lead to the conclusion that E/Z isomerization (or double bond twisting) in the excited singlet state is the most important nonradiative deactivation channel to the ground state. Moreover, experimental results obtained by using stationary fluorescence technique reveal the formation of very weak dye-protic solvent exciplexes of different stoichiometries. Furthermore, dynamical relaxation behaviour, as reflected in the fluorescence quantum yield, is correlated with solvent viscosity/free volume. The results point to possible profitable exploitation of this class of molecules as fluorescent probes.
机译:某些供体-受体染料分子,例如反式-4-二甲基氨基-4'-氰基苯乙烯(DCS)及其具有不同柔性度的模型桥联单键衍生物(DCSBS)和桥联双键衍生物(DCSBD)'的光物理性质为调查。这项工作报告了分子结构以及中等粘度对此类分子的荧光性质(包括荧光量子产率)的影响。可以在多维激发态的基础上解释该结果,得出的结论是,激发单重态的E / Z异构化(或双键扭曲)是基态最重要的非辐射失活通道。此外,通过使用固定荧光技术获得的实验结果揭示了不同化学计量比的非常弱的染料-质子溶剂激基复合物的形成。此外,如荧光量子产率所反映的动态弛豫行为与溶剂粘度/自由体积相关。结果表明,这类分子作为荧光探针可能会有利可图。

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