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Structural relaxation in the amorphous and liquid-crystalline phases of a thermotropic polymer

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Summary

The analysis of the structural relaxation in specimens of a thermotropic polymer that are either in the glassy amorphous or in the liquid crystalline state (or in a mixture of them) has been carried out. The results indicate that the two phases behave independently, exhibiting two independent (and well different) glass transitions and with their own structural relaxations. Moreover, the physical aging has a profound influence on the ability to develop the liquid-crystalline phase. It seems that the changes in local order associated with a densification of the liquid-like packing lead to the development of some kind or local alignment, which favors the subsequent liquid-crystallization.

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References

  1. Doolittle AK (1951) J Appl Phys 22:1471.

    Google Scholar 

  2. Cohen MH, Turnbull D (1959) J Chem Phys 31:1164.

    Google Scholar 

  3. Struik LCE (1978) Physical aging of amorphous polymers and other materials. Amsterdam: Elsevier.

  4. Tant MR, Wilkes GL (1981) Polym Eng Sci 21:874.

    Google Scholar 

  5. McKenna GB (1990) Polymer Properties. In: Comprehensive Polymer Science, Vol. 2. Booth C, Price C, eds. Oxford: Pergamon.

  6. Hutchinson JM (1995) Prog Polym Sci 20:703, and refs. therein.

  7. Struik LCE (1987) Polymer 28:1521,1534.

  8. Warner SB (1980) Macromolecules 13:450.

    Google Scholar 

  9. Pérez E, Pereña JM, Benavente R, Bello A, Lorenzo V (1992) Polymer Bull 29:233.

  10. Lorenzo V, Pereña JM, Pérez E, Benavente R, Bello A (1994) J Non-cryst Solids 172-174:644.

    Google Scholar 

  11. Ormazábal A, Lorenzo V, Benavente R, Pérez E, Bello A, Pereña JM (1995) In: Nanostructured and Non-Crystalline Materials. Vázquez M, Hernando A, eds. Singapore: World Scientific, p. 202.

  12. Lorenzo V, Pereña JM, Pérez E, Benavente R, Bello A (1997) J Mater Sci 32:3601.

    Google Scholar 

  13. Gibbs MRJ, Evetts JE, Leake JA (1983) J Mater Sci 18:278.

    Google Scholar 

  14. Kovacs AJ, Aklonis JJ, Hutchinson JM, Ramos A (1979) J Polym Sci: Polym Phys Edn 17:1097.

    Google Scholar 

  15. Williams G (1991) In: Relaxation in complex systems. Ngai KL, Wright GB, eds. Amsterdam: Elsevier, p. 1.

  16. Fernández-Blázquez JP, Bello A, Pérez E (2004) Macromolecules 37:9018.

    Google Scholar 

  17. Fernández-Blázquez JP, Bello A, Pérez E (2005) Polymer 46:10004.

    Google Scholar 

  18. Mitsunobu O (1981) Synthesis 1.

  19. Zhao J, Song R, Zhang Z, Linghu X, Zheng Z, Fan Q (2001) Macromolecules 34:343.

    Google Scholar 

  20. Petrie SEB (1972) J Polym Sci A2 10:1255.

    Google Scholar 

  21. Petrie SEB (1976) J Macromol Sci Phys B12:225.

    Google Scholar 

  22. Ref. 6 and refs. therein.

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Correspondence to Ernesto Pérez.

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Fernández-Blázquez, J., Bello, A. & Pérez, E. Structural relaxation in the amorphous and liquid-crystalline phases of a thermotropic polymer. Polym. Bull. 58, 941–949 (2007). https://doi.org/10.1007/s00289-007-0726-4

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  • DOI: https://doi.org/10.1007/s00289-007-0726-4

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