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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Signal amplification with multilayer arrangements on chemical quartz-crystal-resonator sensors
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Signal amplification with multilayer arrangements on chemical quartz-crystal-resonator sensors

机译:化学石英晶体谐振器传感器上具有多层结构的信号放大

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Viscoelastic properties of chemically sensitive coatings can enhance the mass sensitivity of quartz-crystal-microbalance (QCM) sensors. If analyte sorption is accompanied by a change of the viscoelastic properties of the coating material, the accumulated mass cannot be calculated from the frequency shift without further information. We developed a sensor concept, which is based on a double-layer arrangement, permitting acoustic amplification and chemical sensitivity to be separated. With a proper selection of materials, the first layer realizes a constant acoustic amplification of the mass effect; the chemically sensitive layer acts purely gravimetrically. Major sensor design parameters are the shear modulus and the thickness of the first layer. From the acoustic point of view, the thickness of the chemically active layer and its material properties are less critical; a glasslike, rigid coating is preferred for a stable sensor transfer function. Simultaneous measurement of the resonant frequency of the quartz crystal and its motional resistance can be exploited to check the acoustic amplification.
机译:化学敏感涂层的粘弹性能增强石英晶体微天平(QCM)传感器的质量敏感性。如果分析物的吸附伴随着涂层材料粘弹性的变化,则在没有更多信息的情况下,无法从频率偏移中计算出累积质量。我们开发了一种基于双层结构的传感器概念,可以将声音放大和化学敏感性分开。通过适当选择材料,第一层实现了质量效应的恒定声放大;化学敏感层纯粹是按重量作用的。传感器的主要设计参数是剪切模量和第一层的厚度。从声学的角度来看,化学活性层的厚度及其材料性能的要求不那么严格。为了稳定的传感器传递功能,最好使用玻璃状的刚性涂层。可以利用对石英晶体谐振频率及其运动阻力的同时测量来检查声放大率。

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