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DYNAMICS OF α AND α' RELAXATION IN LAYERED SILICATE/POLYSTYRENE NANOCOMPOSITES STUDIED BY ANELASTIC SPECTROSCOPY

DYNAMICS OF α AND α' RELAXATION IN LAYERED SILICATE/POLYSTYRENE NANOCOMPOSITES STUDIED BY ANELASTIC SPECTROSCOPY
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摘要 The dynamics of polymer chains in layered silicate/polystyrene nanocomposites was studied by anelastic spectroscopy. Two thermal activated peaks (or and α' peaks) appeared when the specimens were heated to a high temperature and they were related to glass transition and liquid-liquid transition, respectively. The activation energy was calculated based on Arrhenius equation and it showed that the activation energy of glass transition (Eg) is much higher than that of liquid-liquid transition (EH). Furthermore, the most interesting result for the activation energy was that there were two contrary trends for Eg and Ell, Eg decreased and Ell increased with the addition of clay platelets. The fragile parameter was analyzed and the variation of fragile parameters for the two transitions was also contrary to each other with the addition of clay platelets. All the results indicated that the confinement effect of clay platelets on the dynamics of polymer chain was scale dependent, and perhaps, the two transitions were produced by different mechanisms. The dynamics of polymer chains in layered silicate/polystyrene nanocomposites was studied by anelastic spectroscopy. Two thermal activated peaks (or and α' peaks) appeared when the specimens were heated to a high temperature and they were related to glass transition and liquid-liquid transition, respectively. The activation energy was calculated based on Arrhenius equation and it showed that the activation energy of glass transition (Eg) is much higher than that of liquid-liquid transition (EH). Furthermore, the most interesting result for the activation energy was that there were two contrary trends for Eg and Ell, Eg decreased and Ell increased with the addition of clay platelets. The fragile parameter was analyzed and the variation of fragile parameters for the two transitions was also contrary to each other with the addition of clay platelets. All the results indicated that the confinement effect of clay platelets on the dynamics of polymer chain was scale dependent, and perhaps, the two transitions were produced by different mechanisms.
出处 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2013年第10期1334-1342,共9页 高分子科学(英文版)
关键词 DYNAMICS Glass transiton Liquid-liquid transition Composites Confinement. Dynamics Glass transiton Liquid-liquid transition Composites Confinement.
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参考文献40

  • 1Wang, M.S. and Pinnavaia, T.J., Chem. Mater., 1994, 6:468.
  • 2Hu, X., Zhang, W., Si, M., Gelfer, M., Hsiao, B., Rafailovich, M., Sokolov, J., Zaitsev, V. and Schwarz, S., Macromolecules, 2003, 36:823.
  • 3Pattanayak, A. and Jana, S.C., Polymer, 2005, 46:3394.
  • 4Yeha, J.M., Chang, K.C., Peng, C.W., Lai, M.C., Hung, C.B., Hsu, S.C., Hwang, S.S. and Lin, H.R., Mater. Chem. Phys., 2009, 115:744.
  • 5Dhibar, A.K., Mallick, S., Rath, T. and Khatua, B.B., J. Appl. Polym. Sci., 2009, 113:3012.
  • 6Ray, S.S. and Okanoto, M., Prog. Polym. Sci., 2003, 28:1539.
  • 7Patro, T.U., Mhalgi, M.V., Khakhar, D.V. and Misra, A., Polymer, 2008, 49:3486.
  • 8Page, K.A. and Adachi, K., Polymer, 2006, 47:6406.
  • 9Elmahdy, M.M., Chrissopoulou, K., Afratis, A., Floudas, G. and Anastasiadis, S.H., Macromolecules, 2006, 39:5170.
  • 10Anastasiadis, S.H., Karatasos, K., Vlachos, G., Manias, E. and Giannelis, E.P., Phys. Rev. Lett., 2000, 84:915.

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