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Design of Detection Electrode on Contactless Conductivity Detection in Capillary Electrophoresis Microchip

机译:毛细管电泳微芯片非接触电导检测检测电极设计

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Contactless conductivity detection has attained great attention in the last decade in capillary electrophoresis. But contactless conductivity detection is restricted by its sensitivity, how to improve detection sensitivity has become the key of contactless conductivity. In this paper a novel extended model for the detection cell consisting of a network of resistors and capacitors is proposed according to the structure of contactless conductivity detection. The effect of the detector geometry on the sensitivity of contactless conductivity is studied. By simulation, the optimal parameters are obtained. Sandwich electrode structure was established to improve the performance of the detector and minimize the stray capacitance between the electrodes. Using the optimal electrode structure, the two peaks corresponding to K~+ and Mg~(2+) are clearly resolved with complete separation.
机译:接触式电导检测在毛细管电泳的最后十年中得到了很大的关注。但非接触式电导检测受其灵敏度的限制,如何提高检测灵敏度已成为非接触式电导率的关键。在本文中,根据非接触电导检测的结构提出了一种用于由电阻器和电容器网络组成的检测单元的新型扩展模型。研究了检测器几何形状对非接触式电导率敏感性的影响。通过模拟,获得最佳参数。建立夹层电极结构以改善检测器的性能,并最小化电极之间的杂散电容。使用最佳电极结构,通过完全分离清楚地解决了对应于K〜+和Mg〜(2+)的两个峰。

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