首页> 外文期刊>Biomacromolecules >Utilizing Furfural-Based Bifuran Diester as Monomer and Comonomer for High-Performance Bioplastics: Properties of Poly(butylene furanoate), Poly(butylene bifuranoate), and Their Copolyesters
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Utilizing Furfural-Based Bifuran Diester as Monomer and Comonomer for High-Performance Bioplastics: Properties of Poly(butylene furanoate), Poly(butylene bifuranoate), and Their Copolyesters

机译:用于高性能生物塑料的单体和共聚单体利用糠醛的二呋盐二酯:聚(丁烯呋喃酸盐)的性质,聚(丁二二甲酸丁酯)及其共聚酯

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摘要

Two homopolyesters and a series of novel random copolyesters were synthesized from two bio-based diacid esters, dimethyl 2,5-furandicarboxylate, a well-known renewable monomer, and dimethyl 2,2'-bifuran-5,5'-dicarboxylate, a more uncommon diacid based on biochemical furfural. Compared to homopolyesters poly(butylene furanoate) (PBF) and poly(butylene bifuranoate) (PBBf), their random copolyesters differed dramatically in that their melting temperatures were either lowered significantly or they showed no crystallinity at all. However, the thermal stabilities of the homopolyesters and the copolyesters were comparable. Based on tensile tests from amorphous film specimens, it was concluded that the elastic moduli, tensile strengths, and elongation at break values for all copolyesters were similar as well, irrespective of the furan:bifuran molar ratio. Tensile moduli of approximately 2 GPa and tensile strengths up to 66 MPa were observed for amorphous film specimens prepared from the copolyesters. However, copolymerizing bifuran units into PBF allowed the glass transition temperature to be increased by increasing the amount of bifuran units. Besides enhancing the glass transition temperatures, the bifuran units also conferred the copolyesters with significant UV absorbance. This combined with the highly amorphous nature of the copolyesters allowed them to be melt-pressed into highly transparent films with very low ultraviolet light transmission. It was also found that furan-bifuran copolyesters could be as effective, or better, oxygen barrier materials as neat PBF or PBBf, which themselves were found superior to common barrier polyesters such as PET
机译:两种均聚酯和一系列新型随机共聚酯由两种生物基二酸酯,二甲基2,5-呋喃二羧酸酯,可公知的可再生单体和二甲基二甲基二甲基 - 5,5,5'-二羧酸甲酯合成更加罕见的二酸,基于生化糠醛。与均聚酯聚合物聚(丁烯呋喃酸盐)(PBF)和聚(丁烯二呋喃)(PBBF)(PBBF)相比,它们的随机共聚酯急剧差异,因为它们的熔化温度要么显着降低,或者它们根本没有结晶性。然而,均聚酯和共聚酯的热稳定性是可比的。基于来自非晶膜样品的拉伸试验,得出结论:对于所有共聚酯的弹性模量,拉伸强度和伸长率和突破值的伸长率也是如此相似,而不管呋喃:Bifuran摩尔比如何相似。对于由共聚酯制备的非晶膜样品,观察到大约2GPa的拉伸模量和高达66MPa的拉伸强度。然而,将双硫酸单元共聚到PBF中允许通过增加二呋喃单元的量来增加玻璃化转变温度。除了增强玻璃化转变温度之外,双呋喃单元还赋予共聚酯,具有显着的UV吸光度。这种结合共聚酯的高度无定形性质使它们熔融压入高度透明的薄膜,具有非常低的紫外光透射。还发现呋喃 - 二维共聚酯可以是整洁的PBF或PBBF的有效,或更好的氧气阻隔材料,它们本身都被发现优于普通障碍聚酯,例如PET

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  • 来源
    《Biomacromolecules》 |2020年第2期|共10页
  • 作者单位

    Univ Oulu Res Unit Sustainable Chem POB 4300 FI-90014 Oulu Finland;

    Tampere Univ Technol Lab Chem &

    Bioengn POB 541 FI-33101 Tampere Finland;

    KTH Royal Inst Technol Sch Engn Sci Chem Biotechnol &

    Hlth Dept Fibre &

    Polymer Technol SE-10044 Stockholm Sweden;

    Univ Oulu Fibre &

    Particle Engn Res Unit POB 4300 FI-90014 Oulu Finland;

    KTH Royal Inst Technol Sch Engn Sci Chem Biotechnol &

    Hlth Dept Fibre &

    Polymer Technol SE-10044 Stockholm Sweden;

    Univ Oulu Res Unit Sustainable Chem POB 4300 FI-90014 Oulu Finland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
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