Preparation of New Heat-resistant Fiber Materials Using Polymeric Precursors to Polybenzoxazoles(I) -Synthesis and Thermal Cyclization of PHA Derivatives -

폴리벤족사졸 전구체를 이용한 새로운 내열성 섬유고분자의 개발(I) -PHA 유도체의 합성과 열고리화-

  • 백두현 (충남대학교 공과대학 섬유공학과) ;
  • 김은경 (충남대학교 공과대학 섬유공학과) ;
  • 김명균 (충남대학교 공과대학 섬유공학과)
  • Published : 2003.02.01

Abstract

Polyhydroxyamides derivatized with alkyl ester groups were investigated as possible candidates for new heat-resistant fiber materials which could be converted to polybenzoxazoles under fire conditions. Model compounds for these polyhydroxyamides were synthesized and their cyclization chemistry was investigated. The model compound study revealed that all the alkyl ester group containing model compounds could cyclize on heating. The rates of cyclization were dependent upon the structures of substituents. The longer and the larger the substituent, the faster was the rate of cyclization. The polyhydroxyamides showed similar results, namely, polyhydroxyamide derivatized with a longer or larger alkyl substituent showed a faster cyclization rate.

Keywords

References

  1. Heat-resistant Polymers;Encyclopedia of Polymer Science and Engineering(2nd Ed.) v.7 P. M. hergenrother
  2. Polymers: Chemistry and Physics of Modern Materials(2nd Ed.) J. M. G. Cowie
  3. PMSE v.71 Fire-safe Aircraft Materials R. E. Lyon
  4. J. Fier Science v.11 Thermal and Flammability Properties of Poly(p-phenlylene-benzobisoxazole) P. K. Kim;R. Wessling https://doi.org/10.1177/073490419301100402
  5. Macromolecules v.14 Rigid-rod Polymers(Ⅰ): Synthesis and Thermal Properties of Para-aromatic Polymers with 2,6-benzobisoxazole Units in the Main Chain J. F. Wolfe;F. E. Arnold https://doi.org/10.1021/ma50005a004
  6. High Performance Polym. v.1 Rigid-rod Benzobisazole Polymers Containing Benzothiazole Pendent Groups T. T. Tsai;F. E. Arnold
  7. Polym. Prepr. v.32 no.2 Predictions for High-performance Polymers(including first supe-strong polymers) for Hostile Environments F. Dowell
  8. J. Polym. Sci. Part A: Polym. Chem. v.29 Synthesis and Properties of Aromatic Polyamidebenzoxazole from Trimethylsilyl-substituted 2,4-diphenol and Aromatic Dicarboxylic Acid Chlorides Y. Tanaka;Y. Oishi;M. Kakimoto;Y. Imai https://doi.org/10.1002/pola.1991.080291314
  9. Polymer v.34 Synthesis of 4,4'-isopropylidiene Diphenol(bisphenol A)Based Polybenzoxazoles Via an Acid-catalyzed Solution Cyclization Process W. E. Joseph;R. Mercier;A. Prasad;H. Marand;J. E. McGrath https://doi.org/10.1016/0032-3861(93)90375-K
  10. Macromolecules v.27 Palladium-catalyzed Syntheses of Poly(amide-ols)-poly(benzoxazole) Precursors R. J. Perry;B. D. Wilson https://doi.org/10.1021/ma00079a007
  11. Spring SPE Meeting in Indianapolis in May 8, 54th v.3 Synthesis of Precursor Flame Suppressing Polymers C. Gao;S. W. Kantor
  12. Proc. Ann. Meeting Korean Fiber Soc. no.2 Synthesis and Cyclization of Aromatic Polyhydroxyamides(Ⅰ): Medel Compound Study D. H. Baik;H. Y. Kim,M. K. Kim;S. W. Kantor
  13. Proc. Ann. Meeting Korean Fiber Soc. no.2 Synthesis and Cyclization of Aromatic Polyhydroxyamides(Ⅱ): Polyhydroxyamides Containing Trifluoromethyl Group D. H. Baik;M. K. Kim;H. Y. Kim;S. W. Kantor
  14. Fibers and Polymers v.3 no.3 Synthesis and Cyclization of Aromatic Polyhydroxyamides Containing Trifluoromethyl Groups D. H. Baik;H. Y. Kim;S. S. Kantor https://doi.org/10.1007/BF02892623