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Cited 6 time in webofscience Cited 4 time in scopus
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Surface Acoustic Wave Propagation Properties with ZnO Thin Film for Thermo-Electric Sensor Applications

Authors
Jeong, Eun-SeonKang, MingiKim, Hyun-Seok
Issue Date
Oct-2016
Publisher
AMER SCIENTIFIC PUBLISHERS
Keywords
Surface Acoustic Wave; Thermo-Electric; Piezoelectric; Zinc Oxide; ST-X Quartz
Citation
JOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY, v.16, no.10, pp 10219 - 10224
Pages
6
Indexed
SCI
SCIE
SCOPUS
Journal Title
JOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY
Volume
16
Number
10
Start Page
10219
End Page
10224
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/23406
DOI
10.1166/jnn.2016.13131
ISSN
1533-4880
1533-4899
Abstract
The frequency of surface acoustic wave (SAW) devices is decided by the width of the interdigital transducer fingers and the acoustic velocity of the piezoelectric substrate. Any change in the device can be easily detected as a frequency shift or amplitude difference by employing the delay line. In this study, we present a finite element modeling of SAW propagation properties with ZnO thin film for thermo-electric sensor applications. An SAW device is fabricated on an ST-X quartz piezoelectric substrate, where the propagating direction is towards the x-axis. The SAW sensor is designed aiming at a target frequency of 79 MHz. Afterwards, we carry out a comparative analysis of frequency characteristics based on a ZnO thin film for thermo-electric sensor applications. The applied temperature on the top of the ZnO thin film generates a voltage because of the thermo-electric properties of ZnO. Accordingly, the shape of the film also transforms by virtue of the piezoelectric properties of ZnO. Owing to a direct coupling between the thermo-electric and piezoelectric effects of ZnO thin film, the frequency peak splits from 79 MHz and a variation in amplitude is also observed.
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College of Engineering (Department of Electronics and Electrical Engineering)
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