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声波导传感器的灵敏度研究。

Study of the sensitivity of the acoustic waveguide sensor.

作者信息

Gizeli E

机构信息

Institute of Biotechnology, University of Cambridge, UK.

出版信息

Anal Chem. 2000 Dec 15;72(24):5967-72. doi: 10.1021/ac000694u.

Abstract

The sensitivity of the acoustic waveguide sensor to mass deposition in the presence of liquid was optimized as a function of the over-layer thickness. The waveguide geometry consisted of a 0.2-2.2-microm poly(methyl)methacrylate (PMMA) over-layer deposited on the surface of a shear acoustic wave device and supported a Love wave. The response of each polymer-coated waveguide was initially assessed by monitoring the frequency and insertion loss of the device in the presence of air. Sensitivity to viscous and mass loading was studied by recording the amplitude and phase of the wave during the application of water and of a supported lipid bilayer, respectively, on the device surface. Supported bilayers are a versatile system for mass calibration in the presence of liquid because they can be formed spontaneously on a hydrophilic surface, resulting in a layer of reproducible mass density. Results clearly showed that the response of both amplitude and phase depends on the over-layer thickness and increases with the thickness of the polymer layer. Phase was generally found to be more sensitive than amplitude to both viscous water and mass loading. The maximum sensitivity to vesicles deposition was measured at 250 cm2 g(-1) and was detected when 1.3 microm of PMMA was used as a waveguide layer. Results showed that the sensitivity of the acoustic wave sensor can be improved by simply increasing the thickness of the PMMA and that supported phospholipid layers can form an ideal system for both mass calibration and interfacial modification.

摘要

在存在液体的情况下,将声波导传感器对质量沉积的灵敏度作为覆盖层厚度的函数进行了优化。波导结构由沉积在剪切声波器件表面的0.2 - 2.2微米聚甲基丙烯酸甲酯(PMMA)覆盖层组成,并支持乐甫波。通过监测器件在空气中时的频率和插入损耗,初步评估了每个聚合物涂层波导的响应。通过分别记录在器件表面施加水和支持的脂质双层时波的幅度和相位,研究了对粘性和质量负载的灵敏度。支持的双层是在存在液体的情况下进行质量校准的通用系统,因为它们可以在亲水表面上自发形成,从而产生具有可再现质量密度的层。结果清楚地表明,幅度和相位的响应都取决于覆盖层厚度,并随聚合物层厚度的增加而增加。通常发现相位对粘性水和质量负载的敏感度都比幅度更高。对囊泡沉积的最大灵敏度在250 cm² g⁻¹ 处测量,并且当使用1.3微米的PMMA作为波导层时检测到。结果表明,通过简单增加PMMA的厚度可以提高声波传感器的灵敏度,并且支持的磷脂层可以形成用于质量校准和界面修饰的理想系统。

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