Flexible Strain Sensors Fabricated by Meniscus-Guided Printing of Carbon Nanotube-Polymer Composites

  • Wajahat, Muhammad
  • Lee, Sanghyeon
  • Kim, Jung Hyun
  • Chang, Won Suk
  • Pyo, Jaeyeon
  • 외 2명
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초록

Printed strain sensors have promising potential as a human-machine interface (HMI) for health-monitoring systems, human-friendly wearable interactive systems, and smart robotics. Herein, flexible strain sensors based on carbon nanotube (CNT)-polymer composites were fabricated by meniscus-guided printing using a CNT ink formulated from multiwall nanotubes (MWNTs) and polyvinylpyrrolidone (PVP); the ink was suitable for micropatterning on nonflat (or curved) substrates and even three-dimensional structures. The printed strain sensors exhibit a reproducible response to applied tensile and compressive strains, having gauge factors of 13.07 under tensile strain and 12.87 under compressive strain; they also exhibit high stability during similar to 1500 bending cycles. Applied strains induce a contact rearrangement of the MWNTs and a change in the tunneling distance between them, resulting in a change in the resistance (Delta R/R-0) of the sensor. Printed MWNT-PVP sensors were used in gloves for finger movement detection; these can be applied to human motion detection and remote control of robotic equipment. Our results demonstrate that meniscus-guided printing using CNT inks can produce highly flexible, sensitive, and inexpensive HMI devices.

키워드

printed electronicsflexible strain sensorpiezoresistivityMWNT-PVP compositesmeniscus-guided printing CNT inksREDUCED GRAPHENE OXIDEHUMAN-MOTIONELECTRONICSMICROARCHITECTURESPEDOTPSSDEVICESNETWORKRUBBERPAPER
제목
Flexible Strain Sensors Fabricated by Meniscus-Guided Printing of Carbon Nanotube-Polymer Composites
저자
Wajahat, MuhammadLee, SanghyeonKim, Jung HyunChang, Won SukPyo, JaeyeonCho, Sung HoSeol, Seung Kwon
DOI
10.1021/acsami.8b04073
발행일
2018-06
유형
Article
저널명
ACS Applied Materials and Interfaces
10
23
페이지
19999 ~ 20005