Page 148 - Biodegradable Polyesters
P. 148

126  5 Crystallization of Poly(lactic acid)

                       six-membered cyclic esters. J. Am. Chem. 19. Sasaki, S. and Asakura, T. (2003) Helix
                       Soc., 54, 761–772.               distortion and crystal structure of the α
                     8. Wasewar, K.L., Yawalkar, A.A., Moulijn,  form of poly(L-lactide). Macromolecules,
                       J.A., and Pangarkar, V.G. (2004) Fermen-  36, 8385–8390.
                       tation of glucose to lactic acid coupled  20. Pan, P. and Inoue, Y. (2009) Polymor-
                       with reactive extraction: a review. Ind.  phism and isomorphism in biodegrad-
                       Eng. Chem. Res., 43, 5969–5982.  able polyesters. Progr. Polym. Sci., 34,
                     9. Gruber, P.R., Hall, E.S., Kolstad, J.J.,  605–640.
                       Iwen, M.L., Benson, R.D., and Borchardt,  21. Hoogsteen, W., Postema, A.R., Pennings,
                       R.L. (2001) Continuous process for  A.J., and ten Brinke, G. (1990) Crys-
                       the manufacture of lactide and lactide  tal structure, conformation, and
                       polymers, US Patent 6,326,458.   morphology of solution-spun poly(L-
                    10. Gruber, P.R., Hall, E.S., Kolstad, J.J.,  lactide) fibers. Macromolecules, 23,
                       Iwen, M.L., Benson, R.D., and Borchardt,  634–42.
                       R.L. (1994) Continuous process for  22. Puiggalí, J., Ikada, Y., Tsuji, H., Cartier,
                       manufacture of lactide polymers with  L., Okihara, T., and Lotz, B. (2000) The
                       purification by distillation, US Patent  frustrated structure of poly(L-lactide).
                       5,357,035.                       Polymer, 41, 8921–8930.
                            ®
                    11. Scopus (2013) Copyright © 2013 Else-  23. Pan, P.,Zhu,B., Kai, W.,Dong, T.,and
                       vier B.V. Data retrieved on November
                                                        Inoue, Y. (2008) Effect of crystallization
                       2013.
                                                        temperature on crystal modifications and
                    12. Mehta, R., Kumar, V., Bhunia, H., and  crystallization kinetics of poly(L-lactide).
                       Upadhyay, S.N. (2005) Synthesis of  J. Appl. Polym. Sci., 107, 54–62.
                       poly(lactic acid): a review. Polym. Rev.,
                                                     24. Cartier, L., Okihara, T., Ikada, Y., Tsuji,
                       45, 325–349.
                                                        H., Puiggal, J., and Lotz, B. (2000) Epi-
                    13. Södergård, A. and Stolt, M. (2010) in
                                                        taxial crystallization and crystalline
                       Poly(lactic acid): Synthesis, Structures,
                                                        polymorphism of polylactides. Polymer,
                       Properties, Processing, and Applications
                                                        41, 8909–8919.
                       (eds R. Auras, L.T. Lim, S.E.M. Selke,
                                                     25. Marubayashi, H., Asai, S., and Sumita,
                       and H. Tsuji), John Wiley & Sons, Inc.,
                       Hoboken, NJ, pp. 27–41.          M. (2012) Complex crystal formation of
                    14. Saeidlou, S., Huneault, M.A., Li, H.,  poly(L-lactide) with solvent molecules.
                       and Park, C.B. (2012) Poly(lactic acid)  Macromolecules, 45, 1384–1397.
                                                     26. Zhang, J., Tashiro, K., Domb, A.J., and
                       crystallization. Progr. Polym. Sci., 37,
                                                        Tsuji, H. (2006) Confirmation of dis-
                       1657–1677.
                                                        order α Form of poly(L-lactic acid)
                    15. Di Lorenzo, M.L., Rubino, P., Luijkx, R.,
                       and Hélou, M. (2014) Influence of chain  by the X-ray fiber pattern and polar-
                       structure on crystal polymorphism of  ized IR/Raman spectra measured for
                       poly(lactic acid). Part 1: effect of optical  uniaxially-oriented samples. Macromol.
                       purity of the monomer. Colloid Polym.  Symp., 242, 274–278.
                       Sci., 292, 399–409.           27. Kawai, T., Rahman, N., Matsuba, G.,
                    16. Urayama, H., Kanamori, T., and Kimura,  Nishida, K., Kanaya, T., Nakano,
                       Y. (2001) Microstructure and thermome-  M., Okamoto, H., Kawada, J., Usuki,
                       chanical properties of glassy polylactides  A., Honma, N., Nakajima, K., and
                       with different optical purity of the lac-  Matsuda, M. (2007) Crystalliza-
                       tate units. Macromol. Mater. Eng., 286,  tion and melting behavior of poly
                       705–713.                         (L-lactic acid). Macromolecules, 40,
                    17. Garlotta, D. (2001) A literature review of  9463–9469.
                       poly (lactic acid). J. Polym. Environ., 9,  28. Pan, P.,Kai,W., Zhu, B.,Dong, T.,
                       63–84.                           and Inoue, Y. (2007) Polymorphous
                    18. Alemán, C., Lotz, B., and Puiggalí, J.  crystallization and multiple melting
                       (2001) Crystal structure of the α-form  behavior of poly(L-lactide): molecular
                       of poly(L-lactide). Macromolecules, 34,  weight dependence. Macromolecules, 40,
                       4795–801.                        6898–6905.
   143   144   145   146   147   148   149   150   151   152   153