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首页> 外文期刊>Chromatographia >Rapid Determination of Trifluoromethanesulfonate and p-Toluenesulfonate by Ion-Pair Chromatography Using a Reversed-Phase Silica-Based Monolithic Column: Application to the Analysis of Ionic Liquids
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Rapid Determination of Trifluoromethanesulfonate and p-Toluenesulfonate by Ion-Pair Chromatography Using a Reversed-Phase Silica-Based Monolithic Column: Application to the Analysis of Ionic Liquids

机译:反相硅胶色谱柱通过离子对色谱法快速测定三氟甲磺酸盐和对甲苯磺酸盐:在离子液体分析中的应用

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摘要

A method of ion-pair chromatography was developed on a reversed-phase silica-based monolithic column for the fast and simultaneous determination of trifluoromethanesulfonate (CF3SO3 −) and p-toluenesulfonate (C7H7SO3 −). The analysis was performed using a mobile phase of tetrabutylammonium hydroxide + citric acid + acetonitrile on the Chromolith Speed ROD RP-18e column with direct conductivity detection. The effects of the eluent, column temperature and flow rate on the retention of the anions were investigated. The experimental phenomenon was discussed according to hydrophobic interaction and ion-exchange mechanism in the separation. The optimized chromatographic conditions were selected. The optimized eluent for the separation consisted of 0.2 mmol L−1 tetrabutylammonium hydroxide + 0.10 mmol L−1 citric acid + 9% acetonitrile (pH 5.5). The flow rate was set at 6.0 mL min−1. The column temperature was 25 °C. Under the optimal conditions, the better separation of CF3SO3 − and C7H7SO3 − was achieved without any interference by other anions (Cl−, Br−, I−, NO3 −, SO4 2−, ClO3 −, BF4 − and PF6 −). The detection limit (S/N = 3) was 0.28 and 0.71 mg L−1 for CF3SO3 − and C7H7SO3 −, respectively. The method has been applied to the determination of CF3SO3 − and C7H7SO3 − in ionic liquids. The spiked recoveries of CF3SO3 − and C7H7SO3 − were 101.1 and 100.2%, respectively.
机译:建立了一种基于反相硅胶整体柱的离子对色谱法,用于快速,同时测定三氟甲磺酸盐(CF 3 SO 3 - )和对甲苯磺酸盐(C 7 H 7 SO 3 -)。该分析是在Chromolith Speed ROD RP-18e色谱柱上使用氢氧化四丁铵+柠檬酸+乙腈的流动相进行的,具有直接电导检测功能。研究了洗脱液,柱温和流速对阴离子保留率的影响。根据分离过程中的疏水作用和离子交换机理对实验现象进行了探讨。选择最佳的色谱条件。分离的最佳洗脱液为0.2 mmol L -1 氢氧化四丁铵+ 0.10 mmol L -1 柠檬酸+ 9%乙腈(pH 5.5)。流速设定为6.0mL min -1 。柱温为25℃。在最佳条件下,CF 3 SO 3 -和C 7 H 7的分离效果更好 SO 3 -不受其他阴离子(Cl -,Br -, I -,NO 3 -,SO 4 2-,ClO 3 -,BF 4 -和PF 6 - )。 CF 3 SO 3 -的检出限(S / N = 3)为0.28和0.71 mg L -1 sup>和C 7 H 7 SO 3 -。该方法已用于测定CF 3 SO 3 -和C 7 H 7离子液体中的 SO 3 -。 CF 3 SO 3 -和C 7 H 7 SO的加标回收率 3 -分别为101.1%和100.2%。

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