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一种荧光素衍生物吸附在纤维素上时的荧光增强。

Fluorescence enhancement of a fluorescein derivative upon adsorption on cellulose.

作者信息

Lopez Sergio G, Crovetto Luis, Alvarez-Pez Jose M, Talavera Eva M, San Román Enrique

机构信息

Departamento de Fisicoquímica, Universidad de Granada, Campus de Cartuja, 18071, Granada, Spain.

出版信息

Photochem Photobiol Sci. 2014 Sep;13(9):1311-20. doi: 10.1039/c4pp00150h.

Abstract

9-[1-(2-Methyl-4-methoxyphenyl)]-6-hydroxy-3H-xanthen-3-one (2-Me-4-OMe TG) is a fluorescein derivative dye whose photophysical properties show a remarkable pH dependence. In aqueous solution the fluorescence quantum yield (Φf) of its anionic species is nearly a hundred times higher than that of its neutral species. Such a large difference in Φf makes 2-Me-4-OMe TG useful as an "on-off" pH indicator. Here we report that adsorption on the surface of microcrystalline cellulose exerts a profound effect upon the photophysical properties of 2-Me-4-OMe TG. On the solid only the dye neutral species is observed and its Φf is 0.31 ± 0.10, which is approximately thirty times higher than the value found for the neutral species in aqueous solution (Φf = 0.01). 2-Me-4-OMe TG and Dabcyl (DB) were co-adsorbed on the surface of microcrystalline cellulose to study the transfer of excitation energy from the former to the latter. In the absence of the dye, the formation of DB aggregates is observed at concentrations greater than 0.34 μmol per gram of cellulose, while in the presence of 2-Me-4-OMe TG the formation of DB aggregates is thoroughly inhibited. The quenching of fluorescence of 2-Me-4-OMe TG by DB reaches efficiencies as high as 90% for the most concentrated samples.

摘要

9-[1-(2-甲基-4-甲氧基苯基)]-6-羟基-3H-呫吨-3-酮(2-甲基-4-甲氧基呫吨酮,2-Me-4-OMe TG)是一种荧光素衍生物染料,其光物理性质呈现出显著的pH依赖性。在水溶液中,其阴离子形式的荧光量子产率(Φf)几乎比中性形式高一百倍。Φf的这种巨大差异使得2-Me-4-OMe TG可作为一种“开-关”型pH指示剂。在此我们报告,微晶纤维素表面的吸附对2-Me-4-OMe TG的光物理性质产生了深远影响。在固体上仅观察到染料的中性形式,其Φf为0.31±0.10,这大约是在水溶液中中性形式的Φf值(Φf = 0.01)的三十倍。2-Me-4-OMe TG和达比酰(DB)共吸附在微晶纤维素表面,以研究激发能从前者向后者的转移。在没有染料的情况下,当纤维素浓度大于0.34μmol/g时观察到达比酰聚集体的形成,而在2-Me-4-OMe TG存在的情况下,达比酰聚集体的形成被完全抑制。对于浓度最高的样品,DB对2-Me-4-OMe TG荧光的猝灭效率高达90%。

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