STUDY ON THE TRANSESTERIFICATION OF POLY(β-HYDROXYBUTYRATE) AND POLY(ε-CAPROLACTONE)
Feng Zhiliu
Abstract
Feng Zhiliu
Abstract
The transesterification of poly( β \|hydroxybutyrate) (PHB) and poly( e \|caprolactone) (PCL) was carried out by using stannous octoate as catalyzer in liquid phase. The effects of reaction conditions on the transesterification,including reaction temperature, reaction time and catalyzer content,were investigated. The sequence distribution, crystallization behavior and thermal stability of PHB\| co \|PCL copolyesters were studied by 13 C\|NMR, FTIR, DSC, WAXD and TGA. The results showed that the transesterification of PHB with PCL was confirmed to produce a block copolymer, and enhancing reaction temperature and increasing reaction time were advantageous to the transesterification. With the increase in PCL content in the block copolymer, the crystallization behavior of PHB\| co \|PCL copolyesters changed evidently. On the other hand, the introduction of PCL segment into PHB chains did not change its crystalline structure; moreover, thermal stability of PHB\| co \|PCL copolyesters was a little improved in air, comparing with that of pure PHB.
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The transesterification of poly( β \|hydroxybutyrate) (PHB) and poly( e \|caprolactone) (PCL) was carried out by using stannous octoate as catalyzer in liquid phase. The effects of reaction conditions on the transesterification,including reaction temperature, reaction time and catalyzer content,were investigated. The sequence distribution, crystallization behavior and thermal stability of PHB\| co \|PCL copolyesters were studied by 13 C\|NMR, FTIR, DSC, WAXD and TGA. The results showed that the transesterification of PHB with PCL was confirmed to produce a block copolymer, and enhancing reaction temperature and increasing reaction time were advantageous to the transesterification. With the increase in PCL content in the block copolymer, the crystallization behavior of PHB\| co \|PCL copolyesters changed evidently. On the other hand, the introduction of PCL segment into PHB chains did not change its crystalline structure; moreover, thermal stability of PHB\| co \|PCL copolyesters was a little improved in air, comparing with that of pure PHB.
Key concepts: Transesterification, Crystallization, Copolymer, Caprolactone, Materials science, Thermal stability, Polymer chemistry, Fourier transform infrared spectroscopy