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A mild method to prepare high molecular weight poly(butylene furandicarboxylate-co-glycolate) copolyesters: effects of the glycolate content on thermal, mechanical, and barrier properties and biodegradability

机译:一种温和的方法,制备高分子量聚(丁烯呋喃羧酸丁酯 - 共乙酸盐)共聚酯:乙醇含量对热,机械和屏障性质和生物降解性的影响

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摘要

The melt polycondensation of glycolic acid based copolymers with high molecular weights remains a big challenge. In this work, poly(butylene furandicarboxylate-co-glycolate) (PBFGA) and poly(butylene furandicarboxylate)-b-poly(glycolic acid) (PBF-b-GA) copolyesters were synthesized via melt oligomer polycondensation and melt bulk transesterification, respectively. Herein, melt oligomer polycondensation is a better method with mild preparation conditions and products with higher molecular weights (M-w). The analysis of GPC demonstrated that PBFGAs possessed a M-w of up to 8.95 x 10(4) g mol(-1). The PBFGAs also possessed excellent thermal stability (>320 degrees C), which endowed the copolymers with a wider processing window than thermolabile PGA. DSC analyses displayed that PBFGA40-PBFGA10 were semi-crystalline materials that melted between 84.5 and 156 degrees C, while PBFGA50-60 were amorphous. Tensile tests indicated a high elastic modulus of 524-1262 MPa, tensile strength of 16-44 MPa and good elongation at break over 220% of PBFGAs, exceeding most biodegradable packaging materials. The increase of GA units slightly impacted the barrier properties, with reduced CO2 (53x) and O-2 (15x) permeability coefficients than those of commercial PBAT films, and also better than those of PET. The hydrolysis of the glycolate was restrained by steric hindrance of furan rings, while in enzymatic degradation PBFGAs displayed obvious weight loss with GA units >20 mol%. With superior thermal, tensile, barrier and degradable properties, PBFGAs have the potential to serve as promising and innovative bio-based polymers for eco-friendly and sustainable plastic packaging.
机译:高分子量的乙醇酸基共聚物的熔融缩聚仍然是一个很大的挑战。在这项工作中,通过熔融低聚物缩聚和熔融体酯化分别合成聚(丁烯呋喃羧酸甲酯 - 共乙酸盐)(PBFGA)和聚(丁二酸丁酯)-B-聚(乙二醇酸)(PBF-B-GA)共聚酯酯化。这里,熔融低聚物缩聚是具有温和的制备条件和具有较高分子量(M-W)的产品的更好方法。 GPC的分析表明,PBFGA具有高达8.95×10(4 )g摩尔(-1)的M-W. PBFGA也具有优异的热稳定性(> 320℃),其与宽的加工窗口的共聚物比Thermolabile PGA具有更宽的处理窗口。 DSC分析显示PBFGA40-PBFGA10是半结晶材料,熔化在84.5和156℃之间,而PBFGA50-60是无定形的。拉伸试验表明,高弹性模量为524-1262MPa,拉伸强度为16-44MPa,良好的伸长率突破220%的PBFGA,超过最具可生物降解的包装材料。 Ga单元的增加略微影响阻挡性能,CO 2(53倍)和O-2(15x)渗透系数的屏障性能低于商业PBAT薄膜,也比PET的渗透率更好。通过呋喃环的空间阻断,乙酸乙酯的水解抑制,而在酶促降解中,PBFGA与GA单位造影了明显的重量损失> 20mol%。具有卓越的热,拉伸,屏障和可降解性能,PBFGA具有潜力,可作为具有环保和可持续塑料包装的有前途和创新的生物基聚合物。

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  • 来源
    《Green chemistry》 |2019年第11期|共10页
  • 作者单位

    Chinese Acad Sci Ningbo Inst Mat Technol &

    Engn Key Lab Biobased Polymer Mat Technol &

    Applicat Z Ningbo 315201 Zhejiang Peoples R China;

    Chinese Acad Sci Ningbo Inst Mat Technol &

    Engn Key Lab Biobased Polymer Mat Technol &

    Applicat Z Ningbo 315201 Zhejiang Peoples R China;

    Chinese Acad Sci Ningbo Inst Mat Technol &

    Engn Key Lab Biobased Polymer Mat Technol &

    Applicat Z Ningbo 315201 Zhejiang Peoples R China;

    Chinese Acad Sci Ningbo Inst Mat Technol &

    Engn Key Lab Biobased Polymer Mat Technol &

    Applicat Z Ningbo 315201 Zhejiang Peoples R China;

    Chinese Acad Sci Ningbo Inst Mat Technol &

    Engn Key Lab Biobased Polymer Mat Technol &

    Applicat Z Ningbo 315201 Zhejiang Peoples R China;

    Chinese Acad Sci Ningbo Inst Mat Technol &

    Engn Key Lab Biobased Polymer Mat Technol &

    Applicat Z Ningbo 315201 Zhejiang Peoples R China;

    Chinese Acad Sci Ningbo Inst Mat Technol &

    Engn Key Lab Biobased Polymer Mat Technol &

    Applicat Z Ningbo 315201 Zhejiang Peoples R China;

    Chinese Acad Sci Ningbo Inst Mat Technol &

    Engn Key Lab Biobased Polymer Mat Technol &

    Applicat Z Ningbo 315201 Zhejiang Peoples R China;

    Chinese Acad Sci Ningbo Inst Mat Technol &

    Engn Key Lab Biobased Polymer Mat Technol &

    Applicat Z Ningbo 315201 Zhejiang Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境化学;数理科学和化学;化学工业废物处理与综合利用;
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