| Literature DB >> 30257463 |
Hui Zhang1,2, Yao Yao3,4,5, Yue Shi6,7.
Abstract
In this paper, a new approach to enhance the performance of the interdigital electrode-piezoelectric quartz crystal (IDE-PQC) salt solution concentration sensor by modifying the electrode area of PQC was proposed. Equivalent circuit analysis showed that the static capacitor (C₀) which is related to the electrode area of PQC directly affected the response sensitivity of the IDE-PQC sensor. Further, the sensing responses of IDE-PQC sensors to various concentrations of salt solution were measured. Three kinds of salt solution, including NaCl, KCl, and Na₂SO₄, were adpoted to evaluate the sensing performances of the IDE-PQC sensors. The experimental results also indicated that increasing the electrode area of PQC can enhance the sensitivity response of the IDE-PQC sensors to the change of salt solution concentration. For example, the detection sensitivity of the IDE-PQC sensor with an electrode diameter of 5 mm was about three times larger than that of the sensor with an electrode diameter of 3 mm. Meanwhile, we found that the frequency stability of the IDE-PQC sensor was also improved by increasing the electrode area of PQC. In addition, the influence of the electrode area of PQC on the repeatability and the transient response of IDE-PQC salt solution concentration sensor were also studied. This work demonstrates simple and cost-effective method to achieve the performance enhancement of IDE-PQC salt solution concentration sensor by modifying the electrode area of PQC.Entities:
Keywords: IDE-PQC; frequency stability; salt solution concentration sensor; sensitivity enhancement
Year: 2018 PMID: 30257463 PMCID: PMC6209920 DOI: 10.3390/s18103224
Source DB: PubMed Journal: Sensors (Basel) ISSN: 1424-8220 Impact factor: 3.576
Figure 1Schematic diagram of the experimental setup.
Figure 2Illustration of the fabricated piezoelectric quartz crystal (PQCs) with three kinds of electrode diameters.
Figure 3Equivalent circuit model of Interdigital Electrode-Piezoelectric Quartz Crystal (IDE-PQC) sensor.
The equivalent circuit parameters of 10 MHz PQCs with different diameters of silver electrode.
| The Label of QCM | QF | ||||
|---|---|---|---|---|---|
| PQC-5 | 9.3141 | 25.9809 | 9.77955 | 5.54989 | 48293 |
| PQC-4 | 30.8075 | 17.0796 | 14.8755 | 3.69432 | 47518 |
| PQC-3 | 10.0523 | 10.2552 | 24.7747 | 2.29059 | 39387 |
Figure 4Simulation result of the resonance frequency of IDE-PQC sensor as a function of (a) RL or (b) CL.
Figure 5Frequency shifts of IDE-PQC sensor at different NaCl solution concentration.
Figure 6Frequency shifts of the IDE-PQC-5 sensor to different salt solutions.
Figure 7The series resistance Rs of IDE-PQC sensor at different concentrations of (a) NaCl. (b) KCl and (c) Na2SO4 solution, and (d) The comparison of the series resistance Rs of IDE-PQC-5 sensor at different salts solution.
Figure 8The response with error bar of IDE-PQC sensor. The error bar represents standard deviation from the mean.
Figure 9Transient response of IDE-PQC sensor to different NaCl solution concentrations.