4.6 Article

Synthesis and characterization of biobased thermoplastic polyester elastomers containing Poly(butylene 2,5-furandicarboxylate)

期刊

RSC ADVANCES
卷 11, 期 25, 页码 14932-14940

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ROYAL SOC CHEMISTRY
DOI: 10.1039/d1ra00066g

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资金

  1. National Natural Science Foundation of China [51703133]
  2. Program for Liaoning Innovative Talents in Universities of China [LR2019053]
  3. Natural Science Foundation of Liaoning, China [2019-MS-263]

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A series of sustainable and reprocessible thermoplastic polyester elastomers P(BF-PBSS) were synthesized and characterized by nuclear magnetic resonance, revealing a microstructure with two domains. The mechanical properties of P(BF-PBSS) could be tailored by adjusting the content of soft segment PBSS. These materials have the potential to be applied in biomedical materials due to their renewable nature and good tensile properties.
A series of sustainable and reprocessible thermoplastic polyester elastomers P(BF-PBSS)s were synthesized using dimethyl-2,5-furandicarboxylate, 1,4-butanediol, and synthetic low-molecular-weight biobased polyester (PBSS). The P(BF-PBSS)s contain poly(butylene 2,5-furandicarboxylate) (PBF) as their hard segment and PBSS as their soft segment. The microstructures of the P(BF-PBSS)s were confirmed by nuclear magnetic resonance, demonstrating that a higher content of the soft segment was incorporated into P(BF-PBSS)s with higher PBSS content. Interestingly, dynamic mechanical analysis indicated that P(BF-PBSS)s comprised two domains: crystalline PBF and a mixture of amorphous PBF and PBSS. Consequently, the microphase separations of P(BF-PBSS)s were mainly induced by the crystallization of their PBF segments. More importantly, the thermal, crystallization, and mechanical properties could be tailored by tuning the PBSS content. Our results indicate that the as-prepared P(BF-PBSS)s are renewable, thermally stable, and nontoxic, and have good tensile properties, indicating that they could be potentially applied in biomedical materials.

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