화학공학소재연구정보센터
Polymer(Korea), Vol.31, No.5, 385-392, September, 2007
Poly(N-vinylpyrrolidone)이 그래프트된 Poly(3-hydroxybutyrate-co-3-hydroxyvalerate) 공중합체의 합성 및 결정화 거동
Preparation and Crystallization Behavior of Poly(3-hydroxybutyrate-co-3-hydroxyvalerate) Grafted with Poly(N-vinylpyrrolidone)
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Poly(N-vinylpyrrolidone)(PVP) groups were grafted onto a poly(3-hydroxybutyrateco-3-hydroxyvalerate)(PHBV) backbone in order to modify its properties and synthesize a novel biocompatible copolymer. The crystallization behavior of PHBV and grafted PHBV was investigated by differential scanning calorimetry (DSC) and polarized optical microscopy (POM). During the coolinginduced crystallization process, the crystallization temperature and the crystallization rate of the grafted PHBV decreased with increasing PVP weight fraction. On the heating scans of all grafted PHBV samples, a new crystallization exothermic peak appeared at almost the same temperature, suggesting the operation of a recrystallization process, while the melting temperature (Tm) and the apparent enthalpy of fusion (Δ Hf) were not affected by graft modification. During the isothermal crystallization process at the same temperature, the presence of side PVP groups decreased the spherulitic growth rate and the spherulitic band spacing with increasing PVP weight fraction in samples.
  1. Ganzeveld KJ, Haen AV, Agteren MHV, Koning WD, Schoot Uiterkamp AJM, J. Clean Prod., 7, 413 (1999)
  2. Taniguchi I, Kagotani K, Kimura Y, Green Chem., 5, 545 (2003)
  3. Sun HX, Wang YH, Wu ZY, Yang QK, Li WB, Huang CL, Biotechnol. Bull., 2, 5 (2004)
  4. Wang T, Ye L, Song YR, Chin. Sci. Bull., 44, 1729 (1999)
  5. D'Haene P, Remsen EE, Asrar J, Macromolecules, 32(16), 5229 (1999)
  6. Fei B, Chen C, Chen S, Peng SW, Zhuang YG, An YX, Dong LS, Polym. Int., 53, 937 (2004)
  7. Mas A, Jaaba H, Schue F, J. Macromol. Sci.-Pure Appl. Chem., A34, 67 (1997)
  8. Gursel I, Balcik C, Arica Y, Akkus O, Akkas N, Hasirci, V, Biomaterials, 19, 1137 (1998)
  9. Chun YS, Kim WN, Polymer, 41(6), 2305 (2000)
  10. Qiu ZB, Ikehara T, Nishi T, Polymer, 44(24), 7519 (2003)
  11. Qiu ZB, Fujinami S, Komura M, Nakajima K, Ikehara T, Nishi T, Polymer, 45(13), 4355 (2004)
  12. He Y, Asakawa N, Inoue Y, J. Polym. Sci. B: Polym. Phys., 38(22), 2891 (2000)
  13. Lee HS, Lee TY, Polymer, 38(17), 4505 (1997)
  14. Tesema Y, Raghavan D, Stubbs J, J. Appl. Polym. Sci., 93(5), 2445 (2004)
  15. Hu SG, Jou CH, Yang MC, Biomaterials, 24, 2685 (2003)
  16. Hu SG, Jou CH, Yang MC, J. Appl. Polym. Sci., 88(12), 2797 (2003)
  17. Fujimoto K, Takebayashi Y, Inoue H, Ikada Y, J. Polym. Sci. A: Polym. Chem., 31, 1035 (1993)
  18. Park J, Park JG, Choi WM, Ha CS, Cho WJ, J. Appl. Polym. Sci., 74(6), 1432 (1999)
  19. Kallrot M, Edlund U, Albertsson AC, Biomaterials, 27, 1788 (2006)
  20. Zhang Y, Lam YM, J. Colloid Interface Sci., 285(1), 80 (2005)
  21. Cook SE, Park IK, Kim EM, Jeong H, Park TG, Jaie Y, Akaikea T, Cho CS, J. Control. Release, 105, 151 (2005)
  22. Park IK, Ihm JE, Park YH, Choi YJ, Kim SI, Kim WJ, Akaike T, Cho CS, J. Control. Release, 86, 349 (2003)
  23. Wang LL, Xu YS, Iran. Polym. J., 15, 467 (2006)
  24. Willett JL, Kotnis MA, O'Brien GS, Fanta GF, Gordon SH, J. Appl. Polym. Sci., 70(6), 1121 (1998)
  25. Manaresi P, Passalacqua V, Pilati F, Polymer, 16, 520 (1975)
  26. Bloembergen S, Holden DA, Hamer GK, Bluhm TL, Marchessault RH, Macromolecules, 19, 2865 (1986)
  27. Li J, Lai F, Liu JJ, J. Appl. Polym. Sci., 92(4), 2514 (2004)
  28. Scandola M, Ceccorulli G, Pizzoli M, Gazzano M, Macromolecules, 25, 1405 (1992)
  29. Bluhm TL, Hamer GK, Marchessault RH, Fyfe CA, Veregin RP, Macromolecules, 19, 2871 (1986)
  30. Fagerburg DR, Watkins JJ, Lawrence PB, Macromolecules, 26, 114 (1993)
  31. Xing PX, Dong LS, An YX, Feng ZL, Avella M, Martuscelli E, Macromolecules, 30(9), 2726 (1997)
  32. Bin F, Cheng C, Hang W, Peng SW, Wang XY, Dong LS, Xin JH, Polymer, 45(18), 6275 (2004)