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Cracked titanium film on an elastomeric substrate for highly flexible, transparent, and low-power strain sensors

Authors
Noh, Jin-Seo
Issue Date
24-Oct-2013
Publisher
SPRINGER
Keywords
Titanium film; Polydimethylsiloxane; Cracks; Strain sensor
Citation
NANOSCALE RESEARCH LETTERS, v.8
Journal Title
NANOSCALE RESEARCH LETTERS
Volume
8
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/14210
DOI
10.1186/1556-276X-8-441
ISSN
1931-7573
Abstract
Strain-dependent cracking behaviors in thin titanium (Ti) films on polydimethylsiloxane (PDMS) substrates were systematically investigated for their application to sensitive, flexible, transparent, and portable strain sensors. When uniaxially elongated, vertical cracks were developed in the low-strain range, and beyond a critical strain, tilted cracks appeared to intersect the vertical cracks. The cracking behaviors were also dependent on Ti film thickness. The varying strain-dependent crack patterns produced a significant resistance change in response to the applied strain, particularly, in the high-and broad-strain range. For a 180-nm-thick Ti film on PDMS substrate, a gauge factor of 2 was achieved in the range of 30% to 50% strain. The operation power was extremely low. All the Ti films on PDMS substrates were transparent, highly flexible, and very easy to fabricate. These results suggest that cracked Ti films on PDMS substrates could be a viable candidate for realizing a low-cost, flexible, transparent, and portable strain sensor.
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