Department of Chemistry, Louisiana State University, Baton Rouge, Louisiana 70803, USA.
Anal Chem. 2010 Jun 15;82(12):5028-37. doi: 10.1021/ac9027774.
We report on the synthesis and characterization of a new fluorescent chiral ionic liquid (FCIL), l-phenylalanine ethyl ester bis(trifluoromethane) sulfonimide (l-PheC(2)NTf(2)), capable of serving simultaneously as solvent, chiral selector, and fluorescent reporter in chiral analytical measurements. Enantiomers of different analytes, including fluorescent and nonfluorescent compounds, with a variety of structures were shown to induce wavelength- and analyte-dependent changes in the fluorescence intensity of this FCIL. This system may provide both chemo- and enantioselectivity toward multiple analytes simultaneously. The newly synthesized FCIL, derived from commercially available l-phenylalanine ethyl ester chloride and lithium bis(trifluoromethane) sulfonamide, was obtained as liquid at room temperature and is stable to thermal decomposition up to 270 degrees C. Absorption and fluorescence properties of neat l-PheC(2)NTf(2) were complex. While the absorption properties were similar to phenylalanine with a weakly absorbing tail extending beyond 400 nm, multiple excitation and emission bands were observed in its Excitation-Emission Matrix (EEM). A prominent excimer emission displayed the greatest intensity of all emission bands, and a long-wavelength emission shifted toward the red with increasing excitation wavelength. These different spectral regions were shown to respond differently toward several analytes, including sugars such as glucose and mannose, making this an ideal system to exploit the multidimensional properties of fluorescence. The unique properties of l-PheC(2)NTf(2) combined with EEMs resulted in reliable identification of different enantiomers and measurement of enantiomeric composition. Importantly, the choice of excitation and emission wavelength regions was an important variable shown to improve prediction of enantiomeric composition.
我们报告了一种新的荧光手性离子液体(FCIL),l-苯丙氨酸乙酯双(三氟甲烷)磺酰亚胺(l-PheC(2)NTf(2))的合成与表征,它能够同时作为溶剂、手性选择剂和荧光报告物用于手性分析测量。具有多种结构的不同分析物的对映异构体,包括荧光和非荧光化合物,被证明能够诱导这种 FCIL 的荧光强度随波长和分析物而变化。该系统可能同时对多种分析物提供化学和对映选择性。新合成的 FCIL 由商业可得的 l-苯丙氨酸乙酯氯和双(三氟甲烷)磺酰胺锂衍生而来,在室温下为液体,热分解至 270°C 时稳定。纯 l-PheC(2)NTf(2)的吸收和荧光性质复杂。虽然吸收性质类似于苯丙氨酸,其尾部有一个弱吸收,延伸至 400nm 以上,但在其激发-发射矩阵(EEM)中观察到多个激发和发射带。一个突出的激基缔合物发射显示出所有发射带中最强的强度,并且随着激发波长的增加,长波长发射向红色移动。这些不同的光谱区域对包括葡萄糖和甘露糖在内的几种分析物表现出不同的响应,使该体系成为利用荧光多维性质的理想体系。l-PheC(2)NTf(2)的独特性质与 EEM 相结合,实现了不同对映异构体的可靠识别和对映体组成的测量。重要的是,激发和发射波长区域的选择是一个重要的变量,它可以提高对映体组成的预测。