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Chemical liquid-phase detection using guided SH-SAW: theoretical simulation and experiments

机译:使用SH-SAW进行化学液相检测:理论模拟和实验

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摘要

Results are presented for direct chemical sensing in liquid environments using guided shear horizontal surface acoustic wave (SH-SAW) sensor platforms on 36/spl deg/ rotated Y-cut LiTaO/sub 3/. Two different sensor geometries are theoretically analyzed. Complex bulk and shear moduli are utilized to represent the viscoelastic properties of the polymers and estimate their influence on the velocity shift and attenuation change, hence on the sensor characteristics. Experimental results are presented and discussed for dual delay line devices with a reference line coated with PMMA and a sensing line coated with a chemically sensitive polymer, which acts as both a guiding layer and a sensing layer. Various chemically sensitive polymers are investigated, and the tested analytes include toluene, ethylbenzene and xylene. Analytes in the low concentration (1 ppm to 60 ppm) range in aqueous solutions are tested. Stability, sensitivity and partial selectivity are investigated by varying the coating thickness and curing temperature for the chemically sensitive layer. Partition coefficients for polymer-aqueous analyte pairs are used to explain the observed trend in sensitivity. Both mass loading and the coating viscoelasticity change influence the sensor response. A low ppb level detection limit is estimated from the present experiment measurement.
机译:给出了在36 / spl度/旋转Y形LiTaO / sub 3 /上使用导向剪切水平声表面波(SH-SAW)传感器平台在液体环境中直接化学感测的结果。理论上分析了两种不同的传感器几何形状。复数的体积模量和剪切模量用于表示聚合物的粘弹性质,并估计它们对速度变化和衰减变化的影响,从而对传感器的特性产生影响。提出并讨论了双延迟线设备的实验结果,该延迟线的参考线涂有PMMA,传感线涂有化学敏感的聚合物,既充当引导层又充当传感层。研究了各种对化学敏感的聚合物,测试的分析物包括甲苯,乙苯和二甲苯。测试水溶液中低浓度(1 ppm至60 ppm)范围内的分析物。通过改变化学敏感层的涂层厚度和固化温度来研究其稳定性,敏感性和部分选择性。聚合物-水分析物对的分配系数用于解释灵敏度的观察趋势。质量负载和涂层粘弹性的变化都会影响传感器的响应。从当前的实验测量值可以估算出较低的ppb水平检测限。

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