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Morphology of polyamide 6 confined into carbon nanotubes

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The preparation of polymer nanocomposites filled with carbon nanotubes requires the nanotubes to be uniformly dispersed and compatible with the polymer matrix. In this work we report a preparation method of polyamide 6 (PA 6) based nano-composite containing multi-walled carbon nanotubes (MWCNT) without any additional surface modification and obtained by in situ polymerization, as a simple method for composites production. The process was assisted by ultrasounds prior to synthesis. With such a method, an interesting morphology of polyamide 6 confined into a multi-walled carbon nanotube as well as grafted on a carbon nanotube surface was observed. For comparative purpose, PA 6 nanocomposites were also prepared from commercially available master batch by melt compounding.
Wydawca
Rocznik
Strony
306--311
Opis fizyczny
Bibliogr. 22 poz., rys.
Twórcy
autor
  • West Pomeranian University of Technology Szczecin, Polymer Institute, Piastow 45, 70-311 Szczecin, Poland
  • West Pomeranian University of Technology Szczecin, Polymer Institute, Piastow 45, 70-311 Szczecin, Poland
autor
  • Honda R&D Europe (Deutschland), Carl-Legien-Str. 30, D-63073 Offenbach/Main, Germany
autor
  • West Pomeranian University of Technology Szczecin, Polymer Institute, Piastow 45, 70-311 Szczecin, Poland
Bibliografia
  • [1] BITINIS N., HERNANDEZ M., VERDEJO R., KENNY J.M., LOPEZ-MANCHADO M.A., Adv. Mater. Sci., 23 (2011), 5229.
  • [2] JORDAN J., JACOB K.I., TANNENBAUM R., SHARAF M.A., JASIUK I., Mater. Sci. Eng. A-Struct., 393 (2005), 1.
  • [3] JANCAR J., DOUGLAS J.F., STARR F.W., KUMAR S.K., CASSAGNAU P., LESSER A.J., STERNSTEIN S.S., BUEHLER M.J., Polymer, 51 (2010), 3321.
  • [4] ZHANG W.L., SHEN L., PHANG I.Y., LIU T., Macromolecules, 37 (2004), 256.
  • [5] VANKAYALA R.R., LAI W.I.P., CHENG K.C., HWANG K.C., Polymer, 52 (2011), 3337.
  • [6] LI J., FANG Z., TONG L., GU A., LIU F., Eur. Polym. J., 42 (2006), 3230.
  • [7] LOGAKIS E., PANDIS C., PEOGLOS V., PISSIS P., PIONTECK J., P¨OTSCHKE P., MICUS ´I K M., OMASTOVA M., Polymer, 50 (2009), 5103.
  • [8] SCHARTEL B., P¨OTSCHKE P., KNOLL U., ABDELGOAD M., Eur. Polym. J., 41 (2005), 1061.
  • [9] KODGIRE P.V., BHATTACHARYYA A.R., BOSE S., GUPTA N., KULKARNI N.R., MISRA A., Chem. Phys. Lett., 432 (2006) 480.
  • [10] XU L., YE Z., CUI Q., GU Z., MERCIER L., Polymer, 52 (2011), 5961.
  • [11] LI Y., SHIMIZU H., J. Polym. Sci. A1, 44 (2005), 284.
  • [12] KIMURA M., IWASHIMA Y., OHTA K., HANABUSA K., SHIRAI H., Macromolecules, 38 (2005), 5055.
  • [13] LIN V.S.Y., RADU D.R., HAN M.K., DENG W., KUROKI S., SHANKS B.H., PRUSKI M., J. Am. Chem. Soc., 124 (2002), 9040.
  • [14] BROZA G., KWIATKOWSKA M., ROSŁANIEC Z., SCHULTE K., Polymer, 46 (2005), 5860.
  • [15] ZHOU R.J., BURKHART T., J. Mater. Sci., 46 (2011), 1228.
  • [16] LOGAKIS E., PANDIS C., PEOGLOS V., PISSIS P., STERGIOU C., PIONTECK J., P¨OTSCHKE P., MICUS´I K M., OMASTOVA M., J. Polym. Sci., 47 (2009), 764.
  • [17] KIM S.H., PARK S.H., KIM S.C., Polym. Bull., 53 (2005), 285.
  • [18] CHANG J.H., UK AN Y., RYU S., GIANNELIS E.P., Polym. Bull., 51 (2003), 69.
  • [19] EL FRAY M., RYBKO M., PIEGAT A., Mater. Sci. Forum, 714 (2012), 277.
  • [20] KUMAR S., DANG T.D., ARNOLD F.E., BHATTACHARYYA A.R., MIN B.G., ZHANG X., VAIA R.A., PARK C., ADAMS W.W., HAUGE R.H., SMALLEY R.E., RAMESH S., WILLIS P.A., Macromolecules, 35 (2002), 9039.
  • [21] DENG J., DING X., ZHANG W., PENG Y., WANG Y., LONG X., LI P., CHAN A.S.C., Eur. Polym. J., 38 (2002), 2497.
  • [22] WARSHEL A., LEVITT M., LIVSON S., J. Mol. Spectr., 33 (1970), 84.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-1c90633b-d645-4a49-a5d6-4020c56c8c38
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