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首页> 外文期刊>Journal of separation science. >A study on the system of nonaqueous microchip electrophoresis with on-line peroxyoxalate chemiluminescence detection
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A study on the system of nonaqueous microchip electrophoresis with on-line peroxyoxalate chemiluminescence detection

机译:非水微芯片电泳在线过草酸化学发光检测系统的研究

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摘要

This article describes a further development of our previously reported miniaturized analysis system of microchip electrophoresis with on-line chemiluminescence detection. The system, developed first time for nonaqueous microchip electrophoresis with peroxyoxalate chemiluminescence detection, consists of a suction pressure device for sample or reagent introduction, a constant voltage supplied for electrophoretic separation, an either hydrophilic or hydrophobic porous polymer plug for preventing chemiluminescence reagent flowing upstream and a spiral detection channel for enhancement of both detection sensitivity and reproducibility. Especially, by using organic solvent as BGE medium, the developed system avoided the interface problem between aqueous running buffer and low-water-content chemiluminescence solvent in previous reports. The influencing factors on chemiluminescence signal were optimized using rhodamine 6G as model molecule. The system performance was further investigated in the experiment of separation of hydrophilic rhodamine dyes and analysis of hydrophobic polycyclic aromatic hydrocarbon, providing the detection limit (S/N = 3) of 3.5 nmol/L for rhodamine 123, 6.8 nmol/L for rhodamine 6G, and 60 nmol/L for 1-aminopyrene, respectively. The experimental results showed the system offered a number of benefits, including compact structure, high sensitivity, good reproducibility, and a wide range of application prospect.
机译:本文介绍了我们先前报道的带有在线化学发光检测的微型芯片电泳微型分析系统的进一步发展。该系统是首次开发用于过氧草酸酯化学发光检测的非水微芯片电泳,该系统包括用于样品或试剂引入的抽吸压力设备,为电泳分离提供的恒定电压,用于防止化学发光试剂向上游流动的亲水性或疏水性多孔聚合物塞和螺旋检测通道,可同时提高检测灵敏度和重现性。特别是,通过使用有机溶剂作为BGE介质,该开发的系统避免了先前报道中的水性运行缓冲液和低水化学发光溶剂之间的界面问题。以若丹明6G为模型分子优化了化学发光信号的影响因素。在亲水罗丹明染料的分离实验和疏水性多环芳烃的分析实验中进一步研究了系统性能,提供了若丹明123的检测限(S / N = 3)为3.5 nmol / L,若丹明6G的检测限为6.8 nmol / L 1-氨基for分别为60 nmol / L。实验结果表明,该系统具有结构紧凑,灵敏度高,重现性好等优点,具有广泛的应用前景。

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