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用于低导电液体的新型阻抗池:本体和界面贡献的测定

Novel impedance cell for low conductive liquids: determination of bulk and interface contributions.

作者信息

Becchi Marta, Callegaro Luca, Durbiano Francesca, D'Elia Vincenzo, Strigazzi Alfredo

机构信息

Dipartimento di Fisica, Politecnico di Torino, Corso Duca degli Abruzzi 24, 10129 Torino, Italy.

出版信息

Rev Sci Instrum. 2007 Nov;78(11):113902. doi: 10.1063/1.2805195.

Abstract

A plane capacitor cell with variable gap has been designed in order to detect the complex permittivity of low conductive liquids (up to 500 microS/cm) and the impedance of the sample-electrode interface. The novelty of the cell consists of the simultaneous presence of the field uniformity ensured by a guard ring, an adjustable gap between 300 microm and 6.75 mm (the electrode axial motion avoiding any rotation), and the immersion of the capacitor in the sample reservoir. The size of the capacitor electrodes and the gap values have been tested via the capacitance detection of the in-air cell at 1 kHz. The sample measurements have been performed by scanning the frequency range between 15 Hz and 2 MHz at four different capacitor gap values. In the paper a method to directly extract the bulk complex permittivity and the interface impedance versus frequency is presented. It is based on the assumption that the interface contribution is independent of the electrode gap, as confirmed (within the measurement accuracy) from measurements on all samples investigated. As samples of interest, we have chosen two certified electrolytic conductivity standards, KCl aqueous solutions having conductivity traceable to SI units; and two polymer latex aqueous dispersions of microspheres. Regarding KCl solutions, the conductivity measurements are compatible with the reference values within the specified uncertainty; the measured permittivities are consistent with the literature. For all samples, we have recovered the expected result that the interface impedance mainly affects the low frequency range (f<10 kHz).

摘要

为检测低电导率液体(高达500微西门子/厘米)的复介电常数以及样品-电极界面的阻抗,设计了一种间隙可变的平面电容器单元。该单元的新颖之处在于同时具备由保护环确保的场均匀性、300微米至6.75毫米之间的可调间隙(电极轴向移动,避免任何旋转)以及将电容器浸入样品池中。通过在1千赫兹下对空气中单元的电容检测,测试了电容器电极的尺寸和间隙值。通过在四个不同的电容器间隙值下扫描15赫兹至2兆赫兹的频率范围来进行样品测量。本文提出了一种直接提取体复介电常数和界面阻抗随频率变化的方法。该方法基于界面贡献与电极间隙无关的假设,这一点在对所有研究样品的测量中(在测量精度范围内)得到了证实。作为感兴趣的样品,我们选择了两种经认证的电解电导率标准物,即电导率可溯源至国际单位制的氯化钾水溶液;以及两种聚合物乳胶微球水分散体。对于氯化钾溶液,电导率测量值在规定的不确定度范围内与参考值相符;测得的介电常数与文献一致。对于所有样品,我们都得到了预期的结果,即界面阻抗主要影响低频范围(f<10千赫兹)。

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