Electrochemically Powered, Energy-Conserving Carbon Nanotube Artificial Muscles

  • Lee, Jae Ah
  • Li, Na
  • Haines, Carter S.
  • Kim, Keon Jung
  • Lepro, Xavier
  • ... KIM, SEON JEONG
  • 외 2명
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초록

While artificial muscle yarns and fibers are potentially important for many applications, the combination of large strokes, high gravimetric work capacities, short cycle times, and high efficiencies are not realized for these fibers. This paper demonstrates here electrochemically powered carbon nanotube yarn muscles that provide tensile contraction as high as 16.5%, which is 12.7 times higher than previously obtained. These electrochemical muscles can deliver a contractile energy conversion efficiency of 5.4%, which is 4.1 times higher than reported for any organic-material-based artificial muscle. All-solid-state parallel muscles and braided muscles, which do not require a liquid electrolyte, provide tensile contractions of 11.6% and 5%, respectively. These artificial muscles might eventually be deployed for a host of applications, from robotics to perhaps even implantable medical devices.

키워드

artificial musclescarbon nanotubeselectrochemistryenergy conversion efficiencyACTUATORS
제목
Electrochemically Powered, Energy-Conserving Carbon Nanotube Artificial Muscles
저자
Lee, Jae AhLi, NaHaines, Carter S.Kim, Keon JungLepro, XavierOvalle-Robles, RaquelKIM, SEON JEONGBaughman, Ray H.
DOI
10.1002/adma.201700870
발행일
2017-08
유형
Article
저널명
Advanced Materials
29
31
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1 ~ 7