首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Constant pressure-assisted head-column field-amplified sample injection in combination with in-capillary derivatization for enhancing the sensitivity of capillary electrophoresis
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Constant pressure-assisted head-column field-amplified sample injection in combination with in-capillary derivatization for enhancing the sensitivity of capillary electrophoresis

机译:恒压辅助头柱场放大的样品注入与毛细管内衍生化相结合,可增强毛细管电泳的灵敏度

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摘要

In this work, a novel method combining constant pressure-assisted head-column field-amplified sample injection (PA-HC-FASI) with in-capillary derivatization was developed for enhancing the sensitivity of capillary electrophoresis. PA-HC-FASI uses an appropriate positive pressure to counterbalance the elec_troosmotic flow in the capillary column during electrokinetic injection, while taking advantage of the field amplification in the sample matrix and the water of the "head column". Accordingly, the analytes were stacked at the stationary boundary between water and background electrolyte. After 600 s PA-HC-FASI, 4-fluoro-7-nitro-2,1,3-benzoxadiazole as derivatization reagent was injected, followed by an electroki_netic step (5 kV, 45 s) to enhance the mixing efficiency of analytes and reagent plugs. Standing a specified time of 10 min for derivatization reaction under 35 C, then the capillary temperature was cooled to 25 C and the derivatives were immediately separated and determined under 25 C. By investigating the vari_ables of the presented approach in detail, on-line preconcentration, derivatization and separation could be automatically operated in one run and required no modification of current CE commercial instru_ment. Moreover, the sensitivity enhancement factor of 520 and 800 together with the detection limits of 16.32 and 6.34 pg/mL was achieved for model compounds: glufosinate and aminomethylphosphonic acid, demonstrating the high detection sensitivity of the presented method.
机译:在这项工作中,为增强毛细管电泳的灵敏度,开发了一种将恒压辅助头柱场放大样品进样(PA-HC-FASI)与毛细管内衍生化相结合的新方法。 PA-HC-FASI使用适当的正压来平衡电动注入过程中毛细管柱中的电渗流,同时利用了样品基质和“头柱”中水的场放大作用。因此,分析物堆积在水和背景电解质之间的固定边界处。在600 s PA-HC-FASI之后,注入4-氟-7-硝基-2,1,3-苯并恶二唑作为衍生试剂,然后进行电动步骤(5 kV,45 s)以提高分析物与样品的混合效率。试剂塞。在35°C下静置10分钟的指定时间进行衍生化反应,然后将毛细管温度冷却至25°C,并在25°C下立即分离衍生物并测定。通过详细研究所提出方法的变量,在线预浓缩,衍生化和分离可以一次运行自动进行,无需修改当前的CE商业仪器。而且,对于模型化合物:草铵膦和氨基甲基膦酸,获得了520和800的灵敏度增强因子以及16.32和6.34 pg / mL的检出限,证明了本方法的高检测灵敏度。

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