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用于测量低离子浓度的电解质电导率检测器的优化。

Optimization of an electrolyte conductivity detector for measuring low ion concentrations.

作者信息

Timmer Björan, Sparreboom Wouter, Olthuis Wouter, Bergveld Piet, van den Berg Albert

机构信息

MESA+ Research Institute, University of Twente, Enschede, P O Box 217, 7500AE, Enschede, The Netherlands.

出版信息

Lab Chip. 2002 May;2(2):121-4. doi: 10.1039/b201225a. Epub 2002 Apr 17.

Abstract

The optimization process of a planar interdigitated conductivity detector for measuring very low electrolyte concentrations for use in a lab-on-chip gas detection system is described. An electrical equivalent of the sensor is given, which includes the double layer capacitance dependency on the electrolyte concentration, resulting in a better description of the impedance of the sensor. The cell constant of the sensor is minimized to reduce the cell resistance in low specific conductivity solutions under the restriction of a small electrode area (> or = 0.1 cm(2)) for fast measurement, prescribed by the ammonia detection system. The small size makes it suitable for integration in micro channels. The developed sensor has a cell constant of 7.9 m(-1) resulting in a maximum resistance for deionized water of 177 k Omega at a frequency of 1 kHz.

摘要

本文描述了一种用于实验室芯片气体检测系统中测量极低电解质浓度的平面叉指式电导检测器的优化过程。给出了该传感器的等效电路,其中包括双层电容对电解质浓度的依赖性,从而能更好地描述传感器的阻抗。在氨检测系统规定的快速测量所需的小电极面积(≥0.1平方厘米)的限制下,将传感器的池常数最小化,以降低低电导率溶液中的池电阻。小尺寸使其适合集成到微通道中。所开发的传感器池常数为7.9 m⁻¹,在1 kHz频率下,去离子水的最大电阻为177 kΩ。

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