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用于微芯片毛细管电泳的非接触式电导检测器。

Contactless conductivity detector for microchip capillary electrophoresis.

作者信息

Pumera Martin, Wang Joseph, Opekar Frantisek, Jelínek Ivan, Feldman Jason, Löwe Holger, Hardt Steffen

机构信息

Department of Chemistry and Biochemistry, New Mexico State University, Las Cruces 88003, USA.

出版信息

Anal Chem. 2002 May 1;74(9):1968-71. doi: 10.1021/ac011219e.

Abstract

A microfabricated electrophoresis chip with an integrated contactless conductivity detection system is described. The new contactless conductivity microchip detector is based on placing two planar sensing aluminum film electrodes on the outer side of a poly(methyl methacrylate) (PMMA) microchip (without contacting the solution) and measuring the impedance of the solution in the separation channel. The contactless route obviates problems (e.g., fouling, unwanted reactions) associated with the electrode-solution contact, offers isolation of the detection system from high separation fields, does not compromise the separation efficiency, and greatly simplifies the detector fabrication. Relevant experimental variables, such as the frequency and amplitude of the applied ac voltage or the separation voltage, were examined and optimized. The detector performance was illustrated by the separation of potassium, sodium, barium, and lithium cations and the chloride, sulfate, fluoride, acetate, and phosphate anions. The response was linear (over the 20 microM-7 mM range) and reproducible (RSD = 3.4-4.9%; n = 10), with detection limits of 2.8 and 6.4 microM (for potassium and chloride, respectively). The advantages associated with the contactless conductivity detection, along with the low cost of the integrated PMMA chip/detection system, should enhance the power and scope of microfluidic analytical devices.

摘要

描述了一种带有集成非接触式电导检测系统的微制造电泳芯片。新型非接触式电导微芯片检测器基于在聚甲基丙烯酸甲酯(PMMA)微芯片外侧放置两个平面感应铝膜电极(不接触溶液),并测量分离通道中溶液的阻抗。非接触式方法避免了与电极 - 溶液接触相关的问题(例如,污染、不必要的反应),使检测系统与高分离场隔离,不影响分离效率,并且极大地简化了检测器的制造。对相关实验变量,如施加的交流电压或分离电压的频率和幅度进行了检查和优化。通过分离钾、钠、钡和锂阳离子以及氯、硫酸根、氟、乙酸根和磷酸根阴离子展示了检测器的性能。响应呈线性(在20 μM - 7 mM范围内)且可重复(相对标准偏差 = 3.4 - 4.9%;n = 10),钾和氯的检测限分别为2.8和6.4 μM。非接触式电导检测的优点以及集成PMMA芯片/检测系统的低成本,应会增强微流控分析设备的功能和应用范围。

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