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Theoretical and experimental mass-sensitivity analysis of polymer-coated SAW and STW resonators for gas sensing applications

机译:用于气体传感应用的聚合物涂层SAW和STW谐振器的理论和实验质量敏感性分析

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Polymer-coated surface transverse waves (STW) resonators have recently been successfully studied for organic gas sensing applications. The first results indicate increased absolute and even relative sensitivity as compared to similar resonators with surface acoustic waves (SAW). However, the gain in sensitivity is accompanied by the adverse effect of an increased attenuation and the advantage frame is difficult to establish quantitatively. In this paper, a new set of experimental samples with Parylene C-coated quartz substrates are studied. The samples are matched in frequency and wavelength. The results are compared and the obtained features explained using available theoretical algorithms for analyzing layered SAW and Love configurations, and a recently developed STW algorithm. The approximate limits of advantageous applicability of the STW resonator gas sensors are discussed.
机译:聚合物涂层的表面横波(STW)谐振器最近已经成功地研究了有机气体传感应用。第一个结果表明,与具有表面声波(SAW)的类似谐振器相比,绝对灵敏度和相对灵敏度都得到了提高。然而,灵敏度的提高伴随着衰减增加的不利影响,并且优势框架难以量化。在本文中,研究了一组新的带有聚对二甲苯C涂层石英衬底的实验样品。样本在频率和波长上匹配。比较结果并使用可用的理论算法(用于分析分层的SAW和Love配置)以及最近开发的STW算法解释获得的特征。讨论了STW谐振器气体传感器的有利适用性的近似极限。

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