Zinc-air powered carbon nanotube yarn artificial muscle

  • Park, Jong Woo
  • Song, Gyu Hyeon
  • Hyeon, Jae Sang
  • Wang, Zhong
  • Baughman, Ray H.
  • ... Kim, Seon Jeong
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5

초록

Previously known electrochemically powered yarn artificial muscles that mimic the structure and function of natural muscles show remarkable performance in actuation stroke and work capacity. However, these electrochemical muscles are traditionally powered by a voltage source, which adds weight and volume to the system when constructing a microscale robot, making it challenging to achieve a compact design. Here, we demonstrate that carbon nanotube muscles are powered by a chemical source in the electrode and environmentally available oxygen. These muscles provide 15 times the gravimetric work capacity of natural skeletal muscle. These powerful muscles effectively operate as zinc-air batteries, which use a coiled carbon nanotube yarn as the muscle electrode. With the available zinc-air fuel cell generating voltage of 1.35 V, the maximum contractile stroke and work capacity are 5.17 % and 0.60 J/g, respectively. This muscle system can contract over 80 cycles with 5 milligrams of zinc, and by refueling or recharging the battery, the cycle life can be increased.

키워드

Artificial musclesCarbon nanotubesCoiled yarn musclesZinc-air batteriesENERGYFIBER
제목
Zinc-air powered carbon nanotube yarn artificial muscle
저자
Park, Jong WooSong, Gyu HyeonHyeon, Jae SangWang, ZhongBaughman, Ray H.Kim, Seon Jeong
DOI
10.1016/j.snb.2025.137447
발행일
2025-05
유형
Article
저널명
Sensors and Actuators, B: Chemical
431
페이지
1 ~ 8