Page 191 - Carbon Nanotube Fibres and Yarns
P. 191

Carbon nanotube yarn structures and properties   181


                [70]  W.J. Lyons, Dynamic properties of filaments, yarns, and cords at sonic frequencies,
                  Text. Res. J. 19 (3) (1949) 123–135.
                [71]  G.F.S. Hussain, K.R.K. Iyer, N.B. Patil, Influence of mercerization and crosslinking
                  on the dynamic and static moduli of cotton yarns, Text. Res. J. 52 (1982) 663–665.
               [72]  N. Matsumoto, A. Oshima, G. Chen, M. Yudasaka, M. Yumura, K. Hata, et al.,
                  Elucidating the effect of heating induced structural change on electrical and ther-
                  mal  property  improvement of single  wall  carbon nanotube,  Carbon  87  (2015)
                  239–245.
                [73]  A. Buldum, J.P. Lu, Contact resistance between carbon nanotubes, Phys. Rev. B 63
                  (161403) (2001) 1–4.
                [74]  A. Bachtold, M. Henny, C. Terrier, C. Strunk, C. Schönenberger, J.-P. Salvetat, et al.,
                  Contacting carbon nanotubes selectively with low-ohmic contacts for four-probe
                  electric measurements, Appl. Phys. Lett. 73 (2) (1998) 274–276.
                [75]  H. Dai, E.W. Wong, C.M. Lieber, Probing electrical transport in nanomaterials: con-
                  ductivity of individual carbon nanotubes, Science 272 (1996) 523–526.
                [76]  G. Chen, D.N. Futaba, S. Sakurai, M. Yumura, K. Hata, Interplay of wall number and
                  diameter on the electrical conductivity of carbon nanotube thin films, Carbon 67
                  (2014) 318–325.
                [77]  A.E. Aliev, C. Guthy, M. Zhang, S. Fang, A.A. Zakhidov, J.E. Fischer, et al., Thermal
                  transport in MWCNT sheets and yarns, Carbon 45 (15) (2007) 2880–2888.
                [78]  X. Zhang, K. Jiang, C. Feng, P. Liu, L. Zhang, J. Kong, et al., Spinning and processing
                  continuous yarns from 4-inch wafer scale super-aligned carbon nanotube arrays, Adv.
                  Mater. 18 (12) (2006) 1505–1510.
                [79]  X. Zhang, Q. Li, T.G. Holesinger, P.N. Arendt, J. Huang, P.D. Kirven, et al., Ul-
                  trastrong, stiff, and lightweight carbon-nanotube fibers, Adv. Mater. 19 (23) (2007)
                  4198–4201.
                [80]  P.D. Bradford, A.E. Bogdanovich, Electrical conductivity study of carbon nanotube
                  yarns, 3-d hybrid braids and their composites, J. Thermoplast. Compos. Mater. 42
                  (2008) 1533–1545.
                [81]  G. Xu, J. Zhao, S. Li, X. Zhang, Z. Yong, Q. Li, Continuous electrodeposition for
                  lightweight, highly conducting and strong carbon nanotube-copper composite fibers,
                  Nanoscale 3 (10) (2011) 4215–4219.
                [82]  K. Liu, F. Zhu, L. Liu, Y. Sun, S. Fan, K. Jiang, Fabrication and processing of high-
                  strength densely packed carbon nanotube yarns without solution processes, Nanoscale
                  4 (11) (2012) 3389–3393.
                [83]  M.B. Jakubinek, M.B. Johnson, M.A. White, C. Jayasinghe, G. Li, W. Cho, et al., Ther-
                  mal and electrical conductivity of array-spun multi-walled carbon nanotube yarns,
                  Carbon 50 (1) (2012) 244–248.
                [84]  Y. Li, I. Kinloch, A. Windle, Direct spinning of carbon nanotube fibers from chemical
                  vapor deposition synthesis, Science 304 (5668) (2004) 276–278.
                [85]  X.-H. Zhong, Y.-L. Li, Y.-K. Liu, X.-H. Qiao, Y. Feng, J. Liang, et al., Continuous
                  multilayered carbon nanotube yarns, Adv. Mater. 22 (6) (2010) 692–696.
                [86]  X. Zhong, R. Wang, Y. Wen, Effective reinforcement of electrical conductivity and
                  strength of carbon nanotube fibers by silver-paste-liquid infiltration processing, Phys.
                  Chem. Chem. Phys. 15 (11) (2013) 3861–3865.
                [87]  B. Vigolo, A. Penicaud, C. Coulon, C. Sauder, R. Pailler, C. Journet, et al., Macro-
                  scopic fibers and ribbons of oriented carbon nanotubes, Science 290 (2000) 1331–
                  1334.
               [88]  L.M. Ericson, H. Fan, H. Peng, V.A. Davis, W. Zhou, J. Sulpizio, et al., Macro-
                  scopic, neat, single-walled carbon nanotube fibers, Science 305 (5689) (2004)
                  1447–1450.
   186   187   188   189   190   191   192   193   194   195   196