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Abstrakty
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.
Słowa kluczowe
Wydawca
Czasopismo
Rocznik
Tom
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
autor
- 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