Design of a portable guided SH-SAW chemical sensor system for liquid environments

D. Jeutter, F. Josse, M. Johnson, M. Wenzel, J. Hossenlopp, R. Cernosek
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引用次数: 11

Abstract

Following successful application in gas sensing, acoustic wave liquid sensors attracted considerable attention due to the need for real-time, rapid and direct detection where the device is in direct contact with the solution. More importantly, there is a need for field measurement capability with portable devices. Challenges include a physical layout of the RF circuitry to minimize parasitic and spurious noise, continuous and realtime measurements capability, and obtaining vector network analyzer (VNA) performance in a portable RF unit, especially since the sensor signal noise dictates the limit of detection (LOD). Polymer-guided shear horizontal surface acoustic wave (SH-SAW) sensor platforms operating around 105 MHz on 36deg rotated Y-cut LiTaO 3 are investigated as portable detectors in liquid environments. The described system is self-contained including RF signal source, sensor input/output signal conditioning, and sensor signal amplitude and phase measuring capabilities. Amplitude and phase signals from the sensor are differentially compared with concomitant signals available directly from the RF signal source. The two primary outputs from the system are voltages related to the detected amplitude and phase changes that are caused by the sensor's response to analyte sorption by the coated device. Several devices, coated with chemically sensitive polymers, are investigated in the detection of low concentrations (10-60 ppm) of ethylbenzene and xylenes in water using the RF portable unit. The units were tested for both reproducibility and repeatability, and the results matched very well with VNA measurements
液体环境下便携式导引SH-SAW化学传感器系统的设计
声波液体传感器在气体传感领域的成功应用引起了人们的广泛关注,因为声波液体传感器需要实时、快速和直接的检测,并且设备与溶液直接接触。更重要的是,需要有便携式设备的现场测量能力。挑战包括射频电路的物理布局,以最大限度地减少寄生和杂散噪声,连续和实时测量能力,以及在便携式射频单元中获得矢量网络分析仪(VNA)性能,特别是因为传感器信号噪声决定了检测极限(LOD)。研究了在36度旋转y型LiTaO 3上工作在105 MHz左右的聚合物导向剪切水平表面声波(SH-SAW)传感器平台作为液体环境中的便携式探测器。所描述的系统是独立的,包括射频信号源、传感器输入/输出信号调理和传感器信号幅度和相位测量能力。来自传感器的幅度和相位信号与直接来自射频信号源的伴随信号进行差异比较。该系统的两个主要输出是与检测到的振幅和相位变化相关的电压,这些变化是由传感器对被涂覆设备的分析物吸收的响应引起的。研究了几种涂有化学敏感聚合物的装置,使用射频便携式装置检测水中低浓度(10-60 ppm)的乙苯和二甲苯。对这些装置进行了再现性和重复性测试,结果与VNA测量结果非常吻合
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