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Comparisons of Polymer/Gas Partition Coefficients Calculated from Responses of Thickness Shear Mode and Surface Acoustic Wave Vapor Sensors

机译:由厚度剪切模式和表面声波蒸气传感器的响应计算得出的聚合物/气体分配系数的比较

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摘要

Apparent partition coefficients, K, for the sorption of toluene by four different polymer thin films on thickness shear mode (TSM) and surface acoustic wave (SAW) devices are compared. The polymers examined-were poly(isobutylene) (PIB), poly(epichlorohydrin) (PECH), poly(butadiene) (PBD), and poly(dimethylsiloxane)(PDMS). Independent data on partition coefficients for toluene in these polymers were compiled for comparison, for TSM sensor measurements were made using both oscillator and impedance, analysis methods. K values from SAY sensor measurements were about twice those calculated from TSM sensor measurements when the polymers were PIB and PECH and they were also at least twice the values, of the independent partition coefficient data, which is interpreted as indicating that the SAW sensor responds to polymer modulus changes as well as to mass changes. K values from SAW and TSM measurements were in agreement with each other and with independent data when the polymer was PBD. Similarly, K values from the PDMS-coated SAW sensor were not much larger than values from independent measurements. These results indicate that modulus effects were not contributing to the SAW sensor responses in the cases of PBD and PDMS. However, K values from the PDMS-coated TSM device were larger than the values from the SAW device or independent measurements, and the impedance analyzer results indicated that this sensor using our sample of PDMS at the applied thickness did not behave as a simple mass sensor. Differences in behavior among the test polymers on SAW devices are interpreted in terms of their differing viscoelastic properties.
机译:比较了厚度剪切模式(TSM)和声表面波(SAW)装置上四种不同的聚合物薄膜吸附甲苯的表观分配系数K。检查的聚合物为聚(异丁烯)(PIB),聚(表氯醇)(PECH),聚(丁二烯)(PBD)和聚(二甲基硅氧烷)(PDMS)。汇编了关于这些聚合物中甲苯分配系数的独立数据以进行比较,对于TSM传感器的测量是使用振荡器和阻抗分析方法进行的。当聚合物为PIB和PECH时,来自SAY传感器测量值的K值大约是从TSM传感器测量值计算得出的K值的两倍,并且它们至少也是独立分配系数数据的值的两倍,这被解释为表明SAW传感器响应聚合物模量变化以及质量变化。当聚合物为PBD时,SAW和TSM测量的K值彼此一致,并且与独立数据一致。同样,PDMS涂层声表面波传感器的K值也比独立测量的值大很多。这些结果表明,在PBD和PDMS的情况下,模量效应对SAW传感器的响应没有贡献。但是,涂覆PDMS的TSM器件的K值大于SAW器件或独立测量的K值,并且阻抗分析仪结果表明,使用我们的PDMS样品在所施加的厚度下,该传感器的行为不像简单的质量传感器。 SAW器件上测试聚合物之间的行为差​​异是根据其不同的粘弹性质来解释的。

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