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Printability of the screen-printed strain sensor with carbon black/silver paste for sensitive wearable electronics

Authors
Qi, XueHa, HeeboHwang, ByungilLim, Sooman
Issue Date
Oct-2020
Publisher
MDPI AG
Keywords
Ag nanoparticles; Carbon black; Dimension; Rheology; Screen printing; Strain sensor
Citation
Applied Sciences (Switzerland), v.10, no.19, pp 1 - 10
Pages
10
Journal Title
Applied Sciences (Switzerland)
Volume
10
Number
19
Start Page
1
End Page
10
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/52069
DOI
10.3390/app10196983
ISSN
2076-3417
2076-3417
Abstract
Printing technology enables not only high-volume, multipurpose, low-impact, low-cost manufacturing, but also the introduction of flexible electronic devices, such as displays, actuators, and sensors, to a wide range of consumer markets. Consequently, in the past few decades, printed electronic products have attracted considerable interest. Although flexible printed electronic products are attracting increasing attention from the scientific and industrial communities, a systematic study on their sensing performance based on printability has not been reported so far. In this study, carbon black/Ag nanocomposites were utilized as pastes for a flexible wearable strain sensor. The effects of the rheological property of the pastes and the pattern dimensions of the printed electrodes on the sensor’s performance were investigated. Consequently, the printed sensor demonstrated a high gauge factor of 444.5 for an applied strain of 0.6% to 1.4% with a durability of 1000 cycles and a linearity of R2 = 0.9974. The sensor was also stable under tough environmental conditions. © 2020 by the authors. Licensee MDPI, Basel, Switzerland.
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창의ICT공과대학 (융합공학부)
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