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Synthesis and Characterization of N-Substituted Polyether-Block-Amide Copolymers.


ABSTRACT: A series of N-substituted polyether-block-amide (PEBA-X%) copolymers were prepared by melt polycondensation of nylon-6 prepolymer and polytetramethylene ether glycol at an elevated temperature using titanium isopropoxide as a catalyst. The structure, thermal properties, and crystallinity of PEBA-X% were investigated using nuclear magnetic resonance spectroscopy, Fourier-transform infrared spectroscopy, differential scanning calorimetry, wide angle X-ray diffraction, and thermogravimetric analysis. In general, the crystallinity, melting point, and thermal degradation temperature of PEBA-X% decreased as the incorporation of N-methyl functionalized groups increased, owing to the disruption caused to the structural regularity of the copolymer. However, in N-acetyl functionalized analogues, the crystallinity first dropped and then increased because of a new ? form arrangement that developed in the microstructure. After the cross-linking reaction of the N-methyl-substituted derivative, which has electron-donating characteristics, with poly(4,4'-methylenebis(phenyl isocyanate), the decomposition temperature of the resulting polymer significantly increased, whereas no such improvements could be observed in the case of the electro-withdrawing N-acetyl-substituted derivative, because of the incompleteness of its cross-linking reaction.

SUBMITTER: Ye JY 

PROVIDER: S-EPMC7915099 | biostudies-literature | 2021 Feb

REPOSITORIES: biostudies-literature

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Synthesis and Characterization of <i>N</i>-Substituted Polyether-<i>Block</i>-Amide Copolymers.

Ye Jyun-Yan JY   Peng Kuo-Fu KF   Zhang Yu-Ning YN   Huang Szu-Yuan SY   Liang Mong M  

Materials (Basel, Switzerland) 20210206 4


A series of <i>N-</i>substituted polyether-<i>block</i>-amide (PEBA-X%) copolymers were prepared by melt polycondensation of nylon-6 prepolymer and polytetramethylene ether glycol at an elevated temperature using titanium isopropoxide as a catalyst. The structure, thermal properties, and crystallinity of PEBA-X% were investigated using nuclear magnetic resonance spectroscopy, Fourier-transform infrared spectroscopy, differential scanning calorimetry, wide angle X-ray diffraction, and thermogravi  ...[more]

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