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吖啶黄 B 的超快激发态动力学:环境氢键性质的潜在探针。

Ultrafast excited-state dynamics of eosin B: a potential probe of the hydrogen-bonding properties of the environment.

机构信息

Department of Physical Chemistry, University of Geneva, Geneva, Switzerland.

出版信息

J Phys Chem A. 2011 Mar 31;115(12):2465-70. doi: 10.1021/jp110849x. Epub 2011 Mar 7.

Abstract

The photophysics of two dyes from the xanthene family, eosin B (EB), and eosin Y (EY) has been investigated in various solvents by femtosecond transient absorption spectroscopy, first, to clarify the huge disparity of the EB fluorescence lifetimes reported in literature, and, second, to understand the mechanism responsible for the ultrafast excited-state deactivation of EB in water. The excited-state lifetime of EB was found to be much shorter in water and in other protic solvents, due to the occurrence of hydrogen-bond assisted nonradiative deactivation. This mechanism is associated with the hydrogen bonds between the solvent molecules and the nitro groups of EB, which become stronger upon optical excitation due to the charge-transfer character of the excited-state. This process is not operative with EY, where the nitro groups are replaced by bromine atoms. Therefore, the excited-state lifetime of EB in solution is directly related to the strength of the solvent as a hydrogen-bond donor, offering the possibility to build a corresponding scale based on the fluorescence quantum yield or lifetime of EB. This scale of hydrogen-bonding strength could be especially useful for studies of liquid interfaces by time-resolved surface second harmonic generation.

摘要

两种吖啶酮类染料,曙红 B(EB)和曙红 Y(EY)的光物理性质已通过飞秒瞬态吸收光谱在各种溶剂中进行了研究,其目的首先是澄清文献中报道的 EB 荧光寿命的巨大差异,其次是了解导致 EB 在水中超快激发态失活的机制。由于氢键辅助的非辐射失活,EB 在水中和其他质子溶剂中的激发态寿命要短得多。这种机制与溶剂分子与 EB 的硝基之间的氢键有关,由于激发态的电荷转移特性,这些氢键在光激发时会变得更强。对于 EY,其中硝基被溴原子取代,该过程不起作用。因此,EB 在溶液中的激发态寿命与溶剂作为氢键供体的强度直接相关,这为根据 EB 的荧光量子产率或寿命构建相应的标度提供了可能性。这种氢键强度标度对于通过时间分辨表面二次谐波产生研究液-液界面可能特别有用。

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