JOURNAL ARTICLE

Ultra-stretchable and skin-mountable strain sensors using carbon nanotubes–Ecoflex nanocomposites

Morteza AmjadiYong Jin YoonInkyu Park

Year: 2015 Journal:   Nanotechnology Vol: 26 (37)Pages: 375501-375501   Publisher: IOP Publishing

Abstract

Super-stretchable, skin-mountable, and ultra-soft strain sensors are presented by using carbon nanotube percolation network-silicone rubber nanocomposite thin films. The applicability of the strain sensors as epidermal electronic systems, in which mechanical compliance like human skin and high stretchability (ϵ > 100%) are required, has been explored. The sensitivity of the strain sensors can be tuned by the number density of the carbon nanotube percolation network. The strain sensors show excellent hysteresis performance at different strain levels and rates with high linearity and small drift. We found that the carbon nanotube-silicone rubber based strain sensors possess super-stretchability and high reliability for strains as large as 500%. The nanocomposite thin films exhibit high robustness and excellent resistance-strain dependency for over ~1380% mechanical strain. Finally, we performed skin motion detection by mounting the strain sensors on different parts of the body. The maximum induced strain by the bending of the finger, wrist, and elbow was measured to be ~ 42%, 45% and 63%, respectively.

Keywords:
Materials science Composite material Carbon nanotube Silicone rubber Nanocomposite Percolation threshold Strain (injury) Percolation (cognitive psychology) Electrical resistivity and conductivity Electrical engineering

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788
Cited By
29.31
FWCI (Field Weighted Citation Impact)
66
Refs
1.00
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Citation History

Topics

Advanced Sensor and Energy Harvesting Materials
Physical Sciences →  Engineering →  Biomedical Engineering
Conducting polymers and applications
Physical Sciences →  Materials Science →  Polymers and Plastics
Muscle activation and electromyography studies
Physical Sciences →  Engineering →  Biomedical Engineering
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