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Investigation into effect of coupled resonance phenomenon towards sensitivity enhancement of SAW conductivity sensors integrated with ZnO nanorods

机译:ZnO Nanorods集成耦合共振现象耦合谐振现象对敏感性传感器敏感性增强的研究

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In this work, FEM simulation was used to investigate the sensitivity of a one-port surface acoustic wave (SAW) resonator sensor to changes in electrical conductivity of the sensing medium composed of ZnO nanorods offering elastic loading on the surface of the resonator. A system of coupled resonators was formed when the height of the ZnO nanorods attached to the surface of the resonator was adjusted such that the resonant frequency of the nanorod approached the original resonant frequency of the SAW resonator. It was observed that the use of ZnO nanorods of resonant dimensions as sensing medium could enhance the sensitivity of the composite SAW sensor to changes in electrical conductivity of the sensing medium by up to 79 times. The comparatively higher sensitivity of the SAW conductivity sensor utilizing ZnO nanorods at resonant dimensions as sensing medium was attributed to the fact that the system of coupled resonators thus formed operates at a state of high sensitivity to changes induced in piezoelectric stiffening of the substrate during SAW propagation. The observations from FEM simulation conducted in the present work suggests strong prospects for the use of coupled resonance phenomenon at nanoscale for enhancing the sensitivity of conductivity-based SAW gas sensors and UV detectors employing 1-D ZnO nanostructures as sensing medium.
机译:在这项工作中,使用有限元模拟来研究单端口表面声波(SAW)谐振器传感器对由谐振器表面的ZnO纳米棒组成的感测介质的电导率变化的灵敏度。当调整附着到谐振器的表面的ZnO纳米棒的高度时,形成耦合谐振器系统,使得纳米棒的谐振频率接近SAW谐振器的原始谐振频率。观察到,使用谐振尺寸作为感测介质的ZnO纳米棒可以增强复合锯传感器的灵敏度,以便高达79倍的感测介质的电导率变化。利用谐振尺寸的ZnO纳米棒的SAW电导率传感器的相对较高的灵敏度归因于如此形成的耦合谐振器的系统以高灵敏度的状态以高灵敏度的状态操作,在SAW传播期间基板的压电加固中的压电加固变化的变化。在本工作中进行的有限仿真的观察表明,在纳米级使用耦合谐振现象的强度前景,以提高采用1-D ZnO纳米结构作为传感介质的导电性的锯气传感器和UV检测器的敏感性。

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