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Techniques to evaluate the mass sensitivity of Love mode surface acoustic wave biosensors

机译:评估爱模式声波生物传感器质量敏感性的技术

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We investigated the mass sensitivity of Love mode SAW biosensors by experimental and theoretical techniques. A first experimental approach is based on the analysis of the dispersion curve of the sensor, which helps to determine by derivation a value of the mass sensitivity. In order to obtain the dispersion curve, we have performed a chemical wet etching procedure, which enables the continuous monitoring of the transfer function during the etching of the entire guiding layer. A second experimental approach is based on the addition and removal of layers in known quantities. The mass sensitivity is estimated in different cases: etching of a thin gold layer, copper electrodeposition, and surface adsorption of an ionic surfactant. The results obtained by these techniques are compared to a theoretical model. In the theoretical model, the layered structure of the acoustic sensor is described in terms of mechanical transmission lines and the model is used to determine the sensitivity of the acoustic device to density and viscosity variations of thin films and bulk materials. The attenuation and phase shifts are quantified and analyzed to identify the type of interaction between the adsorbed biomolecules layer and the sensor. We conclude that the Love mode SAW biosensor must be considered and optimized as a viscosity sensor and an independent layer thickness measurement is needed to apply adequately the theoretical model.
机译:我们通过实验和理论技术研究了爱情模式锯生物传感器的质量敏感性。第一实验方法是基于传感器的分散曲线的分析,这有助于通过推导质量敏感性的值来确定。为了获得分散曲线,我们已经执行了化学湿法蚀刻程序,其能够在整个引导层的蚀刻期间能够连续监测传递函数。第二实验方法基于已知量的添加和除去层。在不同情况下估计质量敏感性:蚀刻薄金层,铜电沉积和离子表面活性剂的表面吸附。通过这些技术获得的结果与理论模型进行比较。在理论模型中,声学传感器的分层结构在机械传输线方面描述,并且该模型用于确定声学装置对薄膜和散装材料的密度和粘度变化的敏感性。量化和分析衰减和相移,以识别吸附的生物分子层和传感器之间的相互作用类型。我们得出结论,爱情模式锯生物传感器必须被考虑并优化,因为粘度传感器,需要独立的层厚度测量来适用理论模型。

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