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An investigation of the dependence of ZnO film on the sensitivity of love mode sensor in ZnO/quartz structure

机译:ZnO /石英结构中ZnO薄膜对爱模传感器灵敏度的依赖性研究

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摘要

Love mode acoustic devices are very promising as biosensors in liquid environments because of their high sensitivity. An experimental study of Love mode sensors based on ZnO/90degrees rotated ST-cut quartz structure with different sputtering conditions to deposit ZnO films is presented. In order to achieve sensor with higher sensitivity, the effects of sputtering substrate temperatures to deposit ZnO films on the sensitivity of viscosity and conductivity were investigated. Phase velocity, sensitivity and temperature coefficient of frequency (TCF) of Love wave devices have been studied. The Love wave sensor has higher sensitivity as sputtering ZnO films on the unheated substrate than that of on the heated substrate. The maximum sensitivity up to -18.77 x 10(-8) m(2)s kg(-1) of ZnO film with thickness of 1.8 mum for a wavelength of 40 mum is much bigger than SiO2/quartz structure. In this research, we report ZnO/90degrees rotated ST-cut quartz structure of Love wave sensors with high sensitivity of viscosity and conductivity in liquid circumstance and TCF of quartz is compensated by ZnO film. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 30]
机译:爱情模式声学设备由于其高灵敏度而在液体环境中作为生物传感器非常有前途。提出了一种基于ZnO / 90度旋转ST切割石英结构,不同溅射条件沉积ZnO薄膜的Love模式传感器的实验研究。为了获得更高的灵敏度,研究了溅射衬底温度以沉积ZnO膜对粘度和电导率灵敏度的影响。研究了Love波器件的相速度,灵敏度和频率温度系数(TCF)。 Love波传感器在未加热的基板上溅射ZnO膜比在加热的基板上溅射ZnO膜具有更高的灵敏度。厚度为1.8微米,波长为40微米的ZnO薄膜的最大灵敏度高达-18.77 x 10(-8)m(2)s kg(-1),远大于SiO2 /石英结构。在这项研究中,我们报告了在液体环境中具有高粘度和电导率灵敏度的Love波传感器的ZnO / 90度旋转ST切割石英结构,并且通过ZnO薄膜补偿了石英的TCF。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:30]

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