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基于凝聚吸附效应的声表面波气体传感器的研究进展。

Advances in SAW gas sensors based on the condensate-adsorption effect.

机构信息

Institute of Acoustics, Chinese Academy of Sciences, Beijing 100190, China.

出版信息

Sensors (Basel). 2011;11(12):11871-84. doi: 10.3390/s111211871. Epub 2011 Dec 20.

Abstract

A surface-acoustic-wave (SAW) gas sensor with a low detection limit and fast response for volatile organic compounds (VOCs) based on the condensate-adsorption effect detection is developed. In this sensor a gas chromatography (GC) column acts as the separator element and a dual-resonator oscillator acts as the detector element. Regarding the surface effective permittivity method, the response mechanism analysis, which relates the condensate-adsorption effect, is performed, leading to the sensor performance prediction prior to fabrication. New designs of SAW resonators, which act as feedback of the oscillator, are devised in order to decrease the insertion loss and to achieve single-mode control, resulting in superior frequency stability of the oscillator. Based on the new phase modulation approach, excellent short-term frequency stability (±3 Hz/s) is achieved with the SAW oscillator by using the 500 MHz dual-port resonator as feedback element. In a sensor experiment investigating formaldehyde detection, the implemented SAW gas sensor exhibits an excellent threshold detection limit as low as 0.38 pg.

摘要

基于凝聚吸附效应检测的表面声波(SAW)气体传感器具有低检测限和快速响应能力,可用于挥发性有机化合物(VOC)。在这种传感器中,气相色谱柱(GC)用作分离元件,双谐振器振荡器用作检测元件。基于表面有效介电常数法,对与凝聚吸附效应相关的响应机制进行了分析,从而在制造前对传感器性能进行了预测。设计了新的 SAW 谐振器作为振荡器的反馈,以降低插入损耗并实现单模控制,从而提高振荡器的频率稳定性。基于新的相位调制方法,使用 500 MHz 双端口谐振器作为反馈元件,SAW 振荡器实现了出色的短期频率稳定性(±3 Hz/s)。在甲醛检测的传感器实验中,所实现的 SAW 气体传感器的阈值检测限低至 0.38 pg,表现出优异的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2fb0/3252014/db443af93d19/sensors-11-11871f1.jpg

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