DocumentCode
739671
Title
Optimization of a BSP3-Coated Surface Acoustic Wave Chemical Sensor
Author
Wang, Wen ; Hu, Haoliang ; Chen, Gui ; Xie, Xiao ; He, Shitang
Author_Institution
State Key Laboratory of Acoustics, Institute of Acoustics, Chinese Academy of Sciences, Beijing, China
Volume
15
Issue
11
fYear
2015
Firstpage
6730
Lastpage
6737
Abstract
The optimization of fluorinated bisphenol-containing polymer (BSP3)-coated surface acoustic wave (SAW) chemical sensor was performed for sensing organophosphorous compounds with trace concentration in this contribution. First, the response mechanism was characterized using the classical perturbational approach. Optimal sensitive film thickness and operation frequency are determined theoretically to achieve a relative linear characteristic response and a high gas sensitivity. Next, to improve of the corrosion resistance and frequency response characteristics of the sensor chip, Al/Au electrodes are used to form the resonator acted as the feedback element for oscillator. In addition, the substantial improvement is obtained in frequency stability of the resonator–oscillator referring to phase modulation approach. The measured short-term frequency stability of the oscillator at the operation frequency of 300 MHz is up to 2 Hz/s. The theoretical predictions are confirmed by the measured responses from the BSP3-coated SAW sensor for dimethylmethylphosphonate (DMMP) detection. Excellent threshold detection limit less than 0.004 mg/
and good sensitivity (
kHz/mg/
were achieved from the developed BSP3-coated SAW chemical sensor in the DMMP detection.
Keywords
Attenuation; Frequency measurement; Oscillators; Polymers; Resonant frequency; Sensors; Surface acoustic waves; Al/Au-electrode; BSP3; Chemical sensor; Surface acoustic wave; chemical sensor; resonator-oscillator; surface acoustic wave;
fLanguage
English
Journal_Title
Sensors Journal, IEEE
Publisher
ieee
ISSN
1530-437X
Type
jour
DOI
10.1109/JSEN.2015.2464790
Filename
7180293
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