Page 304 - Carbon Nanotube Fibres and Yarns
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Carbon nanotube yarn-based actuators   291


                [47]  J. Foroughi, G.M. Spinks, S. Aziz, A. Mirabedini, A. Jeiranikhameneh, G.G. Wallace,
                 M.E. Kozlov, R.H. Baughman, Knitted carbon-nanotube-sheath/spandex-core elasto-
                 meric yarns for artificial muscles and strain sensing, ACS Nano 10 (10) (2016) 9129–
                 9135.
                [48]  A. Maziz, A. Concas, A. Khaldi, J. Stålhand, N.K. Persson, E.W. Jager, Knitting and
                 weaving artificial muscles, Sci. Adv. 3 (1) (2017) e1600327.
                [49]  W. Guo, C. Liu, F. Zhao, X. Sun, Z. Yang, T. Chen, X. Chen, L. Qiu, X. Hu, H. Peng, A
                 novel electromechanical actuation mechanism of a carbon nanotube fiber, Adv. Mater.
                 24 (39) (2012) 5379–5384.
                [50]  S. He, P. Chen, L. Qiu, B. Wang, X. Sun, Y. Xu, H. Peng, A mechanically actuating
                   carbon-nanotube fiber in response to water and moisture, Angew. Chem. 127 (49)
                 (2015) 15093–15097.
                [51]  G. Zhou, J.H. Byun, Y. Oh, B.M. Jung, H.J. Cha, D.-G. Seong, M.-K. Um, S. Hyun,
                 T.W. Chou, Highly sensitive wearable textile-based humidity sensor made of high-
                 strength,  single  walled  carbon  nanotube/poly  (vinyl  alcohol)  filaments, ACS Appl.
                   Mater. Interfaces 9 (5) (2017) 4788–4797.
                [52]  M.D. Lima, M.W. Hussain, G.M. Spinks, S. Naficy, D. Hagenasr, J.S. Bykova, D. Tolly,
                 R.H. Baughman, Efficient, absorption powered artificial muscles based on carbon na-
                 notube hybrid yarns, Small 11 (26) (2015) 3113–3118.
                [53]  S.H. Kim, C.H. Kwon, K. Park, T.J. Mun, X. Lepró, R.H. Baughman, G.M. Spinks,
                 S.J. Kim, Bio-inspired, moisture-powered hybrid carbon nanotube yarn muscles, Sci.
                 Rep. 6 (2016) 23016.
                [54]  D. Suh, T.K. Truong, D.G. Suh, S.C. Lim, Torsional actuator powered by environmental
                 energy harvesting from diurnal temperature variation, ACS Sustain. Chem. Eng. 4 (12)
                 (2016) 6647–6652.
                [55]  Y. Shang, X. He, C. Wang, L. Zhu, Q. Peng, E. Shi, S. Wu, Y. Yang, W. Xu, R. Wang,
                 Large deformation, multifunctional artificial muscles based on single walled carbon
                 nanotube yarns, Adv. Eng. Mater. 17 (1) (2015) 14–20.
                [56]  H.  Inoue, T.  Yoshiyama,  M.  Hada,  D.  Chujo, Y.  Saito, T.  Nishikawa, Y.  Yamashita,
                 W. Takarada, H. Matsumoto, Y. Hayashi, High performance structure of a coil-shaped
                 soft-actuator consisting of polymer threads and carbon nanotube yarns, AIP Adv. 8 (7)
                 (2018) 075316.
                [57]  S.H. Kim, C.S. Haines, N. Li, K.J. Kim, T.J. Mun, C. Choi, J. Di, Y.J. Oh, J.P. Oviedo,
                 J. Bykova, S. Fang, N. Jiang, Z. Liu, R. Wang, P. Kumar, R. Qiao, S. Priya, K. Cho,
                 M.  Kim,  M.S.  Lucas,  L.F.  Drummy,  B.  Maruyama,  D.Y.  Lee,  X.  Lepró,  E.  Gao,
                 D.  Albarq, R. Ovalle-Robles, S.J. Kim, R.H. Baughman, Harvesting electrical energy
                 from  carbon nanotube yarn twist, Science 357 (6353) (2017) 773–778.
                [58]  J.A. Lee, N. Li, C.S. Haines, K.J. Kim, X. Lepro, R. Robles, S.J. Kim, R. Baughman,
                 Electrochemically powered, energy-conserving carbon nanotube artificial muscles,
                 Adv. Mater. 29 (2017).
                [59]  H.  Kim, J.A.  Lee, H.J.  Sim, M.D.  Lima, R.H.  Baughman, S.J.  Kim, Temperature-
                 responsive tensile actuator based on multi-walled carbon nanotube yarn, Nanomicro
                 Lett. 8 (3) (2016) 254–259.
                [60]  J. Lee, S. Ko, C.H. Kwon, M.D. Lima, R.H. Baughman, S.J. Kim, Carbon nanotube
                 yarn based glucose sensing artificial muscle, Small 12 (15) (2016) 2085–2091.
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