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非接触电导检测器的设计与联用技术进展
引用本文:朱西雷,葛叶刚,康琪,申大忠. 非接触电导检测器的设计与联用技术进展[J]. 化学传感器, 2014, 0(4): 1-13
作者姓名:朱西雷  葛叶刚  康琪  申大忠
作者单位:山东师范大学化学化工与材料科学学院,山东济南250014
基金项目:国家自然科学基金资助项目(21275091,21175084)
摘    要:毛细管电泳中的非接触电导检测技术自1998年问世以来受到了广泛的关注。随着理论研究的深入,检测器的设计不断改进以提高其响应灵敏度,同时使它更便于和已有的仪器设备联用,并应用于微流控芯片电泳中。分析对象也从最初的小无机离子拓展到有机组分和生物大分子,随着商品化检测器的出现,该技术趋于成熟。该文侧重介绍近年来有关该传感器的设计改进、与其它检测器联用、与样品富集技术联合方面的研究和应用进展。

关 键 词:非接触电导检测  毛细管电泳  微流控芯片电泳  联用技术

Proceedings of contactless conductivity detector in designs and combinations in detection and preconcentration techniques
Zhu Xi-lei,Ge Ye-gang,Kang Qi,Shen Da-zhong. Proceedings of contactless conductivity detector in designs and combinations in detection and preconcentration techniques[J]. Chemical Sensors, 2014, 0(4): 1-13
Authors:Zhu Xi-lei  Ge Ye-gang  Kang Qi  Shen Da-zhong
Affiliation:(College of Chemistry, Chemical Engineering and Materials Science, Shandong Normal University, Jinan 250014, China)
Abstract:The popularity of contactless conductivity detection in capillary electrophoresis has been growing steadily since its introduction in 1998. Improvements have been made in the design of the detector in order to facilitate its handling, to allow easy incorporation into available instruments or to achieve higher sensitivity. The understanding of its fundamental working principles has been advanced and the detection approach has also been transferred to lab-on-chip devices. The range of applications has been extended greatly from the initial work on small inorganic ions to include organic species and biomolecules. Commercial devices are now available and the method can be considered a mature detection technique. In this article, the achievements in design of the detector, combination with other detection methods and samole Dreconcentration techniaues are reviewed.
Keywords:contactless conductivity detection  capillary electrophoresis  microchip capillary eleetrophoresis  combination technique
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