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A contactless conductivity detector for capillary electrophoresis: Effects of the detection cell geometry on the detector performance

机译:用于毛细管电泳的非接触式电导检测器:检测池几何形状对检测器性能的影响

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摘要

The effect of the gap between the electrodes and of their width on the behavior of a capacitively wired contactless conductivity detector was studied. The results obtained have indicated that the detector response can be qualitatively described by a model based on the concept of the effective electrode width which is a complex parameter determined by the gap between the electrodes, the frequency of the input signal and the conductivity of the test solution. The detector sensitivity and the effect on the separation efficiency depend on the difference between the effective and geometric electrode widths. Higher detection sensitivities have been attained for detectors with wide electrodes operating at lower frequencies, however, better separation efficiencies have been achieved using detectors with narrow electrodes and higher operational frequencies. The noise increases with decreasing gap between the electrodes and increasing frequency, especially with detectors employing narrow electrodes. [References: 9]
机译:研究了电极之间的间隙及其宽度对电容接线的非接触式电导率检测器行为的影响。获得的结果表明,可以通过基于有效电极宽度的概念的模型来定性地描述检测器响应,该有效电极宽度是由电极之间的间隙,输入信号的频率和测试的电导率确定的复杂参数。解。检测器的灵敏度以及对分离效率的影响取决于有效电极宽度与几何电极宽度之间的差异。对于具有在较低频率下操作的宽电极的检测器已经获得了更高的检测灵敏度,但是,使用具有窄电极和较高操作频率的检测器已经实现了更好的分离效率。噪声随着电极之间间隙的减小和频率的增加而增加,尤其是对于采用窄电极的检测器而言。 [参考:9]

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