Yadava R D S, Kshetrimayum Roshan, Khaneja Mamta
Department of Physics, Faculty of Science, Banaras Hindu University, Varanasi 221005, India.
Ultrasonics. 2009 Dec;49(8):638-45. doi: 10.1016/j.ultras.2009.03.006. Epub 2009 Apr 5.
Simplified relations for the changes in SAW velocity and attenuation due to thin polymer coatings and vapor sorption are presented by making analytic approximations to the complex theoretical model developed earlier by Martin et al. [Anal. Chem. 66 (14) (1994) 2201-2219]. The approximate velocity relation is accurate within 4% for the film thicknesses up to 20% of the acoustic wavelength in the polymer film, and is useful for analyzing the mass loading, swelling and viscoelastic effects in SAW vapor sensors. The approximate attenuation relation is accurate within 20% for very thin films, (less than 2% of the acoustic wavelength in the film). Based on these relations, a new procedure for determination of polymer viscoelastic properties is described that exploits the frequency dependence of the velocity and attenuation perturbations, and employs multifrequency measurement on the same SAW platform. Expressions for individual contributions from the mass loading, film swelling and viscoelastic effects in SAW vapor sensors are derived, and their implications for the sensor design and operation are discussed. Also, a new SAW comb filter design is proposed that offers possibility for multimode SAW oscillator operation over a decade of frequency variation, and illustrates feasibility for experimental realization of wide bandwidth multifrequency SAW platforms.
通过对Martin等人[《分析化学》66 (14) (1994) 2201 - 2219]早期建立的复杂理论模型进行解析近似,给出了由于聚合物薄膜和蒸汽吸附导致的声表面波(SAW)速度和衰减变化的简化关系。对于聚合物薄膜中厚度达声波长20%的情况,近似速度关系的精度在4%以内,可用于分析SAW蒸汽传感器中的质量负载、溶胀和粘弹性效应。对于非常薄的薄膜(小于薄膜中声波长的2%),近似衰减关系的精度在20%以内。基于这些关系,描述了一种测定聚合物粘弹性性质的新方法,该方法利用速度和衰减扰动的频率依赖性,并在同一SAW平台上进行多频率测量。推导了SAW蒸汽传感器中质量负载、薄膜溶胀和粘弹性效应的各自贡献表达式,并讨论了它们对传感器设计和操作的影响。此外,还提出了一种新的SAW梳状滤波器设计,它为在十年频率变化范围内的多模SAW振荡器操作提供了可能性,并说明了实现宽带多频率SAW平台的实验可行性。