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室温离子液体中双酚 A 的荧光特性。

Fluorescence characteristics of bisphenol A in room temperature ionic liquids.

机构信息

Department of Environmental Sciences, Wenzhou Medical College, University-Town, Wenzhou, Zhejiang, China, 325035.

出版信息

J Fluoresc. 2013 Nov;23(6):1157-65. doi: 10.1007/s10895-013-1246-2. Epub 2013 Jul 11.

Abstract

Room temperature ionic liquids (RTILs) are emerging as a new class of 'green' solvents for use in a wide range of chemical processes. RTILs can sensitize or quench fluorescence of organic chemicals and their interactions still remain unclear, especially for weakly fluorescent chemicals. Herein, we report the effects of six RTILs on the fluorescence behavior of bisphenol A (BPA). The fluorescence intensities (FIs) of BPA in a RTIL-acetonitrile system were significantly quenched compared to acetonitrile. The quenching effect was stronger for [CnMIM]BF4 than [CnMIM]PF6. A decreasing trend of fluorescence lifetime (FL) of BPA was observed for [C6MIM]PF6 (4.26 to 3.86 ns) and [C14MIM]PF6 (4.15 to 3.78 ns) with increasing RTIL concentrations in the range of 1-10 mM. The quenching mode was consistent with a static quenching mechanism based on the consistency of FL and FI results. The emission bands of BPA and RTILs did not interfere with each other when RTILs were used as the solvent. The investigated RTILs enhanced the FIs of strongly fluorescing chemicals (12.0 ~ 19.0-fold for norfloxacin and 6.1 ~ 8.5-fold for dansyl chloride), but quenched those of weakly fluorescing chemicals (BPA). These results demonstrate that RTILs have different fluorescent effects on organic chemicals with different fluorophores. The interactions between RTILs and BPA result from many factors in addition to viscosity, such as solvent electrostatic dielectric constant, refractive index, density, polarization and molecular interaction. These results provide a theoretical foundation for application of RTILs in the analysis of weakly fluorescing chemical.

摘要

室温离子液体(RTILs)作为一类新型的“绿色”溶剂,正被广泛应用于各种化学过程中。RTILs 可以敏化或猝灭有机化学品的荧光,但其相互作用仍不清楚,特别是对于弱荧光化学品。在此,我们报道了六种 RTILs 对双酚 A(BPA)荧光行为的影响。与乙腈相比,BPA 在 RTIL-乙腈体系中的荧光强度(FI)显著猝灭。[CnMIM]BF4 对 BPA 的猝灭效果强于 [CnMIM]PF6。随着 RTIL 浓度从 1 到 10 mM 的增加,BPA 的荧光寿命(FL)从 [C6MIM]PF6(4.26 到 3.86 ns)和 [C14MIM]PF6(4.15 到 3.78 ns)呈下降趋势。基于 FL 和 FI 结果的一致性,猝灭模式与静态猝灭机制一致。当 RTIL 用作溶剂时,BPA 和 RTILs 的发射带不会相互干扰。所研究的 RTILs 增强了强荧光化学品(诺氟沙星增强 12.0 至 19.0 倍,丹磺酰氯增强 6.1 至 8.5 倍)的 FI,但猝灭了弱荧光化学品(BPA)的 FI。这些结果表明,RTILs 对具有不同荧光团的有机化学品具有不同的荧光效应。除了粘度之外,RTILs 与 BPA 之间的相互作用还受到溶剂静电介电常数、折射率、密度、极化和分子相互作用等许多因素的影响。这些结果为 RTILs 在弱荧光化学分析中的应用提供了理论基础。

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