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Lithographically Defined Zerogap Strain Sensors

Authors :
Moghaddam, Mahsa Haddadi
Wang, Zhihao
Dalayoan, Daryll J. C
Park, Daehwan
Kim, Hwanhee
Im, Sunghoon
Ji, Kyungbin
Kang, Daeshik
Das, Bamadev
Kim, Dai Sik
Source :
ACS Photonics 2024 11 (8), 3239-3249
Publication Year :
2024

Abstract

Metal thin films on soft polymers provide a unique opportunity for resistance-based strain sensors. A mechanical mismatch between the conductive film and the flexible substrate causes cracks to open and close, changing the electrical resistance as a function of strain. However, the very randomness of the formation, shape, length, orientation, and distance between adjacent cracks limits the sensing range as well as repeatability. Herein, we present a breakthrough: the Zerogap Strain Sensor, whereby lithography eliminates randomness and violent tearing process inherent in conventional crack sensors and allows for short periodicity between gaps with gentle sidewall contacts, critical in high strain sensing enabling operation over an unprecedently wide range. Our sensor achieves a gauge factor of over 15,000 at {\epsilon}ext=18%, the highest known value. With the uniform gaps of three-to-ten thousand nanometer widths characterized by periodicity and strain, this approach has far reaching implications for future strain sensors whose range is limited only by that of the flexible substrate, with non-violent operations that always remain below the tensile limit of the metal.

Subjects

Subjects :
Physics - Applied Physics

Details

Database :
arXiv
Journal :
ACS Photonics 2024 11 (8), 3239-3249
Publication Type :
Report
Accession number :
edsarx.2403.08288
Document Type :
Working Paper
Full Text :
https://doi.org/10.1021/acsphotonics.4c00627