Page 110 - Carbon Nanotube Fibres and Yarns
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102   Carbon Nanotube Fibers and Yarns


            [75]  (a) M. Afshari, D.J. Sikkema, K. Lee, M. Bogle, High performance fibers based on rigid
              and flexible polymers, Polym. Rev. 48 (2) (2008) 230–274.
              (b) H.G.  Chae, S.  Kumar, Rigid-rod polymeric fibers, J. Appl. Polym. Sci. 100 (1)
              (2006) 791–802.
            [76]  (a) J.P.F. Lagerwall, G. Scalia, Carbon nanotubes in liquid crystals, J. Mater. Chem. 18
              (25) (2008) 2890–2898. (b) M.D. Lynch, D.L. Patrick, Organizing carbon nanotubes
              with liquid crystals, Nano Lett. 2 (11) (2002) 1197–1201.
           [77]  S. Kumar, T.D. Dang, F.E. Arnold, A.R. Bhattacharyya, B.G. Min, X. Zhang, R.A. Vaia,
              C. Park, W.W. Adams, R.H. Hauge, R.E. Smalley, S. Ramesh, P.A. Willis, Synthesis, structure,
              and properties of PBO/SWNT composites, Macromolecules 35 (24) (2002) 9039–9043.
            [78]  K. Hun-Sik, M. Seung Jun, J. Rira, J. Hyoung-Joon, Preparation and characterization
              of poly(p-phenylene terephthalamide)/multiwalled carbon nanotube composites via
              in-situ polymerization, Mol. Cryst. Liquid Cryst. 492 (1) (2008) 20–27.
            [79]  T. Sainsbury, K. Erickson, D. Okawa, C.S. Zonte, J.M.J. Fréchet, A. Zettl, Kevlar func-
              tionalized  carbon  nanotubes  for  next-generation  composites,  Chem.  Mater. 22  (6)
              (2010) 2164–2171.
            [80]  C. Yutong, L. Zhaofeng, G. Xianghua, Y. Junrong, H. Zuming, L. Ziqi, Dynamic rhe-
              ological studies of poly(p-phenyleneterephthalamide) and carbon nanotube blends in
              sulfuric acid, Int. J. Mol. Sci. 11 (4) (2010) 1352–1364.
            [81]  L. Deng, R.J. Young, S. van der Zwaag, S. Picken, Characterization of the adhesion
              of single-walled carbon nanotubes in poly(p-phenylene terephthalamide) composite
              fibres, Polymer 51 (9) (2010) 2033–2039.
            [82]  I.  O’Connor, H.  Hayden, J.N.  Coleman,  Y.K.  Gun’ko, High-strength, high-
              toughness composite fibers by swelling Kevlar in nanotube suspensions, Small 5 (4)
              (2009) 466–469.
            [83]  (a) S. Sharma, A.K. Pathak, V.N. Singh, S. Teotia, S.R. Dhakate, B.P. Singh, Excellent
              mechanical properties of long multiwalled carbon nanotube bridged Kevlar fabric,
              Carbon 137 (2018) 104–117.
              (b) E.D. LaBarre, X. Calderon-Colon, M. Morris, J. Tiffany, E. Wetzel, A. Merkle,
              M. Trexler, Effect of a carbon nanotube coating on friction and impact performance of
              Kevlar, J. Mater. Sci. 50 (16) (2015) 5431–5442.
            [84]  C.H. Zhang, H.F. Xu, Z.X. Jiang, F.L. Zhu, Y.D. Huang, Carbon nanotubes grafting
              PBO fiber: a study on the interfacial properties of epoxy composites, Polym. Compos.
              33 (6) (2012) 927–932.
            [85]  X. Yan, H. Dong, Y. Liu, B.A. Newcomb, H.G. Chae, S. Kumar, Z. Xiao, T. Liu, Effect
              of processing conditions on the dispersion of carbon nanotubes in polyacrylonitrile
              solutions, J. Appl. Polym. Sci. 132 (26) (2015) 42177.
            [86]  C. Pramanik, J.R. Gissinger, S. Kumar, H. Heinz, Carbon nanotube dispersion in sol-
              vents and polymer solutions: mechanisms, assembly, and preferences, ACS Nano 11 (12)
              (2017) 12805–12816.
            [87]  T. Liu, S. Kumar, Effect of orientation on the modulus of SWNT films and fibers,
              Nano Lett. 3 (5) (2003) 647–650.
            [88]  P.H.  Wang, S.  Sarkar, P.  Gulgunje,  N.  Verghese,  S.  Kumar,  Fracture  mechanism  of
              high impact strength polypropylene containing carbon nanotubes, Polymer 151 (2018)
              287–298.
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