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Torsional Carbon Nanotube Artificial Muscles
- Foroughi, Javad;
- Spinks, Geoffrey M.;
- Wallace, Gordon G.;
- Oh, Jiyoung;
- Kozlov, Mikhail E.;
- ... Kim, Seon Jeong;
- 외 5명
WEB OF SCIENCE
521SCOPUS
548초록
Rotary motors of conventional design can be rather complex and are therefore difficult to miniaturize; previous carbon nanotube artificial muscles provide contraction and bending, but not rotation. We show that an electrolyte-filled twist-spun carbon nanotube yarn, much thinner than a human hair, functions as a torsional artificial muscle in a simple three-electrode electrochemical system, providing a reversible 15,000 degrees rotation and 590 revolutions per minute. A hydrostatic actuation mechanism, as seen in muscular hydrostats in nature, explains the simultaneous occurrence of lengthwise contraction and torsional rotation during the yarn volume increase caused by electrochemical double-layer charge injection. The use of a torsional yarn muscle as a mixer for a fluidic chip is demonstrated.
키워드
- 제목
- Torsional Carbon Nanotube Artificial Muscles
- 저자
- Foroughi, Javad; Spinks, Geoffrey M.; Wallace, Gordon G.; Oh, Jiyoung; Kozlov, Mikhail E.; Fang, Shaoli; Mirfakhrai, Tissaphern; Madden, John D. W.; Shin, Min Kyoon; Kim, Seon Jeong; Baughman, Ray H.
- 발행일
- 2011-10
- 유형
- Article
- 저널명
- Science
- 권
- 334
- 호
- 6055
- 페이지
- 494 ~ 497