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Contactless Impedance Sensors and Their Application to Flow Measurements

机译:非接触式阻抗传感器及其在流量测量中的应用

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摘要

The paper provides a critical discussion of the present state of the theory of high-frequency impedance sensors (now mostly called contactless impedance or conductivity sensors), the principal approaches employed in designing impedance flow-through cells and their operational parameters. In addition to characterization of traditional types of impedance sensors, the article is concerned with the use of less common sensors, such as cells with wire electrodes or planar cells. There is a detailed discussion of the effect of the individual operational parameters (width and shape of the electrodes, detection gap, frequency and amplitude of the input signal) on the response of the detector. The most important problems to be resolved in coupling these devices with flow-through measurements in the liquid phase are also discussed. Examples are given of cell designs for continuous flow and flow-injection analyses and of detection systems for miniaturized liquid chromatography and capillary electrophoresis. New directions for the use of these sensors in molecular biology and chemical reactors and some directions for future development are outlined.
机译:这篇论文对高频阻抗传感器(现在主要称为非接触式阻抗或电导率传感器)理论的现状,设计阻抗流通池所采用的主要方法及其工作参数进行了重要的讨论。除了表征传统类型的阻抗传感器外,本文还涉及使用不太常见的传感器,例如带有线电极的单元或平面单元。详细讨论了各个操作参数(电极的宽度和形状,检测间隙,输入信号的频率和幅度)对检测器响应的影响。还讨论了将这些设备与液相中的流通量测量耦合时要解决的最重要问题。给出了用于连续流动和流动注射分析的池设计以及用于小型液相色谱和毛细管电泳的检测系统的示例。概述了在分子生物学和化学反应器中使用这些传感器的新方向以及未来发展的一些方向。

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