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Analysis of piezoelectric bulk-acoustic-wave resonators as detectors in viscous conductive liquids

机译:粘性导电液体中作为检测器的压电体声波谐振器的分析

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摘要

An analytical solution for the resonance condition of a piezoelectric quartz resonator with one surface in contact with a viscous conductive liquid is presented. The characteristic equation that describes the resonance condition and accounts for all interactions including acoustoelectric interactions with ions and dipoles in the solution is obtained in terms of the crystal and liquid parameters. A simple expression for the change in the resonance frequency is obtained. For viscous nonconductive solutions, the frequency change is reduced to a relationship in terms of the liquid density and viscosity. For dilute conductive liquid, the change in frequency is derived in terms of the solution conductivity and dielectric constant. The boundary conditions for the problem are defined with and without the electrical effects of electrodes. Experiments were conducted with various viscous and conductive chemical liquids using a fabricated miniature liquid flow cell containing an AT-cut quartz crystal resonator. The results, which show good agreement with the theory, on the use of quartz crystal resonators as conductivity and/or viscosity sensors are reported.
机译:提出了一种压电石英谐振器的谐振条件,该谐振器的一个表面与粘性导电液体接触。根据晶体和液体参数,获得了描述共振条件并说明所有相互作用的特征方程,包括与溶液中离子和偶极子的声电相互作用。获得谐振频率变化的简单表达式。对于粘性非导电溶液,频率变化减小到液体密度和粘度的关系。对于稀导电液体,频率的变化是根据溶液的电导率和介电常数得出的。在有和没有电极的电效应的情况下定义了该问题的边界条件。使用包含AT切割石英晶体谐振器的微型液体流通池,对各种粘性和导电化学液体进行了实验。据报道,使用石英晶体谐振器作为电导率和/或粘度传感器的结果与理论相吻合。

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