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New bio-based polyester with excellent spinning performance: poly(tetrahydrofuran dimethanol- co -ethylene terephthalate).

Yu-Long ChenYue-Song MuZe-Jian HeXin-Ming PuDong-Qi WangMi ZhouLi-Ping Yang
Published in: RSC advances (2022)
With the excessive consumption of fossil energy, technologies that transform bio-based resources into materials have received more and more attention from researchers in recent decades. In this paper, a series of poly(ethylene 2,5-tetrahydrofuran dimethyl terephthalate; PEFTs) with different components were synthesized from 2,5-tetrahydrofuran dimethanol (THFDM), terephthalic acid (TPA), and ethylene glycol (EG). Their chemical structures and compositions were determined by FTIR, 1 H NMR, and 13 C NMR. With the increase in THFDM content, the crystallization, T m , and tensile strength of PEFTs gradually decrease because the introduced THFDM breaks the order of molecular chains, while the thermal stability and T g remain stable. PEFTs seem to present a significant shear thinning phenomenon, which was indicated by the rheological test. Electrospinning technology was used to explore the spinnability of PEFT; it was found that PEFTs have better spinning performance than PET. In addition, due to the good hydrophobicity and porosity of PEFT nanofiber films, they have potential application value in the manufacture of hydrophobic nanofiber and filter films.
Keyphrases
  • solid state
  • high resolution
  • magnetic resonance
  • room temperature
  • computed tomography
  • working memory
  • pet ct
  • ionic liquid
  • positron emission tomography
  • mass spectrometry
  • weight loss
  • climate change