4.8 Article

Harvesting electrical energy from carbon nanotube yarn twist

期刊

SCIENCE
卷 357, 期 6353, 页码 773-778

出版社

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/science.aam8771

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资金

  1. Creative Research Initiative Center for Self-Powered Actuation of the National Research Foundation of Korea
  2. Ministry of Science, ICT & Future Planning
  3. Korea-U.S. Air Force Cooperation Program [2013K1A3A1A32035592]
  4. Ministry of Knowledge Economy [20168510011350]
  5. Air Force Office of Scientific Research [FA9550-15-1-0089, FA9550-12-1-0035]
  6. Air Force grant [AOARD-FA2386-13-4119]
  7. NASA [NNX15CS05C]
  8. Robert A. Welch Foundation [AT-0029]
  9. Office of Naval Research [N00014-14-1-0158]

向作者/读者索取更多资源

Mechanical energy harvesters are needed for diverse applications, including self-powered wireless sensors, structural and human health monitoring systems, and the extraction of energy from ocean waves. We report carbon nanotube yarn harvesters that electrochemically convert tensile or torsional mechanical energy into electrical energy without requiring an external bias voltage. Stretching coiled yarns generated 250 watts per kilogram of peak electrical power when cycled up to 30 hertz, as well as up to 41.2 joules per kilogram of electrical energy per mechanical cycle, when normalized to harvester yarn weight. These energy harvesters were used in the ocean to harvest wave energy, combined with thermally driven artificial muscles to convert temperature fluctuations to electrical energy, sewn into textiles for use as self-powered respiration sensors, and used to power a light-emitting diode and to charge a storage capacitor.

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