Rapid Electromechanical Transduction on a Single-Walled Carbon Nanotube Film: Sensing Fast Mechanical Loading via Detection of Electrical Signal Change

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초록

Carbon nanotubes (CNTs) have been widely explored as next generation embedded-strain-pressure sensors. However, most investigations of CNT sensors did not consider the response time as a critical factor, although the ultrafast sensing of mechanical deformation is very important for the detection of dynamic loading or impact, such as in reactive armor systems. Owing to the low capacitance that shortens the response time of the electrical resistance changes induced by mechanical deformation, CNTs are expected to detect rapid electromechanical transduction without delay. Herein, we fabricate single walled carbon nanotube (SWNT) films on diverse substrates, and evaluate their applications as sensors to detect rapid electromechanical transduction on a macroscopic scale. Under repetitive, high-speed mechanical loading, the SWNT films generate consistent electrical signal changes, which are accurately synchronized with their strain and the beginning of the deformation.

키워드

STRAIN SENSORNANOELECTROMECHANICAL SWITCHESMULTILAYER FOILSTHIN-FILMSCOMPOSITESPRESSURETRANSPARENTMUSCLESYARNSSTRAIN SENSORNANOELECTROMECHANICAL SWITCHESMULTILAYER FOILSTHIN-FILMSCOMPOSITESPRESSURETRANSPARENTMUSCLESYARNS
제목
Rapid Electromechanical Transduction on a Single-Walled Carbon Nanotube Film: Sensing Fast Mechanical Loading via Detection of Electrical Signal Change
저자
Choi, WonjoonHong, Jinkee
DOI
10.1021/ie301551a
발행일
2012-11-14
유형
Article
저널명
Industrial & Engineering Chemistry Research
51
45
페이지
14714 ~ 14721