Solvation dynamics of Coumarin 503 in the liquid-crystal mixture ZLI 1167

G. Saielli, A. Polimeno, P. Nordio, P. Bartolini, M. Ricci, R. Righini
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引用次数: 8

Abstract

The solvation dynamics of the dye Coumarin 503 in the nematic mixture ZLI 1167 has been investigated by means of time-resolved fluorescence spectroscopy, both in the nematic and isotropic phases of the sample. No alignment was imposed on the micro-domains of the nematic phase, so that a complete depolarization of the emitted light was obtained. For the isotropic phase the usual set-up with vertically polarized excitation light and magic-angle detection was used. A time-dependent frequency shift of the maximum of the fluorescence band, caused by solvent reorganization after pulse excitation of the fluorescent probe, was observed. The analysis of the transient Stokes shift correlation function clearly shows biexponential behavior in the nematic phase, the slowest time constant varying from 1670 ps at 311.5 K to 230 ps at 373 K. The decay of the correlation function appears to be largely unaffected by the nematic–isotropic transition, suggesting that the local environment, rather than long-range ordering, determines Stokes shift dynamics. A theoretical model, which takes into account probe reorientations in the presence of a nematic field, and fluctuation of the local solvent polarization, has been developed to interpret the experimental findings.
香豆素503在液晶混合物ZLI 1167中的溶剂化动力学
采用时间分辨荧光光谱法研究了香豆素503在向列相和各向同性相混合物ZLI 1167中的溶剂化动力学。在向列相的微畴上不施加对准,从而获得了发射光的完全去极化。对于各向同性相位,通常采用垂直偏振激发光和魔角检测装置。观察到荧光探针脉冲激发后溶剂重组引起的荧光带最大值随时间的频移。瞬态Stokes位移相关函数的分析清楚地显示出向列相的双指数行为,最慢的时间常数从311.5 K时的1670 ps变化到373 K时的230 ps。相关函数的衰减似乎在很大程度上不受向列-各向同性转换的影响,这表明局部环境,而不是远程排序,决定了Stokes位移动力学。建立了一个考虑向列场存在下探针取向和局部溶剂极化波动的理论模型来解释实验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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