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寻找具有高刚性、韧性的聚酯——具有高异山梨醇含量的可再生芳香族聚酯。

The search for rigid, tough polyesters with high - renewable aromatic polyesters with high isosorbide content.

作者信息

Bottega Pergher Bruno, Weinland Daniel H, van Putten Robert-Jan, Gruter Gert-Jan M

机构信息

Industrial Sustainable Chemistry, van't Hoff Institute of Molecular Sciences, University of Amsterdam Science Park 904 1098 XH Amsterdam The Netherlands

Avantium Support B.V. Zekeringstraat 29 1014 BV Amsterdam The Netherlands.

出版信息

RSC Sustain. 2024 Aug 1;2(9):2644-2656. doi: 10.1039/d4su00294f. eCollection 2024 Aug 28.

Abstract

Renewable polyesters with a good balance between impact strength and elastic modulus (stiffness) are not very common, especially when combined with high glass transition temperature ( ). Achieving such high performance properties would enable the substitution of high performance polymers like ABS and polycarbonate with chemically recyclable polyesters from bio-based or recycled sources. One of the challenges in developing these materials is to select the right composition of the right monomers/comonomer ratios and making these materials with high molecular weight, which can be challenging since some of the most promising rigid diols, such as isosorbide, are unreactive. This study comprises aromatic polyesters from (potentially) renewable monomers, using bio-based isosorbide as a means to increase their and to inhibit their crystallization, while using flexible co-diols to improve impact strength. To incorporate a high amount of isosorbide into the targeted polyesters, we used the synthesis method with reactive phenolic solvents previously developed in our group. The selected compositions display high 's (>90 °C) and high tensile modulus (>1850 MPa). We show that more polar monomers such as the stiffer 2,5-furandicarboxylic acid (FDCA) and diethylene glycol cause high stiffness but decreased impact strength (<5 kJ m). Combining terephthalic acid and isosorbide with more flexible diols like 1,4-butanediol, 1,4-cyclohexanedimethanol (CHDM) and 1,3-propanediol provides a better balance, including the combination of high tensile modulus (>1850 MPa) and high impact strength (>10 kJ m).

摘要

在抗冲强度和弹性模量(刚度)之间取得良好平衡的可再生聚酯并不常见,尤其是当与高玻璃化转变温度相结合时。实现如此高性能的特性将能够用来自生物基或回收来源的可化学回收聚酯替代高性能聚合物,如ABS和聚碳酸酯。开发这些材料的挑战之一是选择合适的单体/共聚单体比例的正确组成,并制备高分子量的这些材料,这可能具有挑战性,因为一些最有前景的刚性二醇,如异山梨醇,是无反应性的。本研究包括由(潜在)可再生单体合成的芳香族聚酯,使用生物基异山梨醇来提高其玻璃化转变温度并抑制其结晶,同时使用柔性共二醇来提高抗冲强度。为了将大量异山梨醇纳入目标聚酯中,我们使用了我们小组先前开发的具有反应性酚类溶剂的合成方法。所选组合物显示出高玻璃化转变温度(>90°C)和高拉伸模量(>1850MPa)。我们表明,更多极性单体,如更刚性的2,5-呋喃二甲酸(FDCA)和二甘醇,会导致高刚度但抗冲强度降低(<5kJ/m²)。将对苯二甲酸和异山梨醇与更柔性的二醇,如1,4-丁二醇、1,4-环己烷二甲醇(CHDM)和1,3-丙二醇相结合,可以提供更好的平衡,包括高拉伸模量(>1850MPa)和高抗冲强度(>10kJ/m²)的组合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/862b/11353682/93fa3c27a090/d4su00294f-f1.jpg

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