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Passive Conductivity Detection for Capillary Electrophoresis

机译:毛细管电泳的被动电导检测

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摘要

A passive electrochemical detection principle that can be applied to capillary electrophoresis is presented. The separation electrical field is used to generate a potential difference between two electrodes located along the channel. For constant-current electrophoresis, the generated signal is proportional to the resistance of the solution passing between the two electrodes. Contrary to conductivity detectors that are ac driven and need to be decoupled from the separation field, the passive detection directly takes advantage of the separation field. The signal is simply measured by a high-impedance voltmeter. The detection concept has been validated by numerical simulations showing how the magnitude of the signal is related to the ratio between the electrode distance and the length of the sample plug. As a proof of the principle, this detection concept has been demonstrated by the electrophoretic separation of three alkali ions on a polymer microchip. Based on preliminary results, a detection limit of 20 μM and a dynamic range of up to 3 orders of magnitude have been achieved.
机译:提出了一种可以应用于毛细管电泳的被动电化学检测原理。分离电场用于在沿着通道定位的两个电极之间产生电势差。对于恒流电泳,生成的信号与在两个电极之间通过的溶液的电阻成正比。与交流驱动且需要与分离场解耦的电导率检测器相反,无源检测直接利用了分离场。信号可以通过高阻抗电压表简单地测量。检测概念已通过数值模拟验证,该模拟显示信号的大小与电极距离和样品塞长度之间的比率如何相关。作为原理的证明,该检测概念已通过电泳分离聚合物微芯片上的三个碱性离子得到了证明。根据初步结果,已达到20μM的检测极限和高达3个数量级的动态范围。

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