Design and Synthesis of Novel Bio-Based Polyester Elastomer with Tunable Oil Resistance

IF 4.2 3区 化学 Q2 POLYMER SCIENCE
Shuai Tang, Jiao Li, Zhao Wang, Liqun Zhang
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Abstract

Polarity determines the oil resistance property of elastomers. In this work, three bio-based polyester elastomers (BPEs) with different mass fraction of ester groups (E) are designed and synthesized aiming to study the relationship of E and oil resistance performance, and to obtain bio-based elastomer materials with tunable oil resistance. Through adjusting the chain length of monomers, E of poly(ethylene glycol/1,3-propanediol/succinate/adipate/itaconate)(PEPSAI), poly(1,3-propanediol/1,4-butanediol/succinate/adipate/itaconate)(PPBSAI), and poly(1,3-propanediol/1,4-butanediol/sebacate/adipate/itaconate)(PPBSeAI) are ≈50.39%, 48.55%, and 39.68%, respectively. Results show that E has great influence on the oil resistance of BPEs. After being immersed in IRM-903# oil for 72 h at room temperature, the changes in mass and volume of BPEs decrease along with the increasing mass fraction of ester groups, indicating improved oil resistance performance. PEPSAI with the highest mass fraction of ester groups presents better oil resistance and lower Tg (better low-temperature resistance) than one of the most used commercial oil-resistant rubber nitrile rubber (N230S). Thus, this work provides a promising strategy to obtain bio-based oil resistant elastomers with practical value.

Abstract Image

新型耐油可调生物基聚酯弹性体的设计与合成
极性决定了弹性体的耐油性能。本文设计合成了3种不同酯基质量分数(E)的生物基聚酯弹性体(BPEs),旨在研究E与耐油性能的关系,获得耐油可调的生物基弹性体材料。通过调整单体链长,聚乙二醇/1,3-丙二醇/琥珀酸酯/己二酸酯/衣康酸酯(PEPSAI)、聚1,3-丙二醇/1,4-丁二醇/琥珀酸酯/己二酸酯/衣康酸酯(PPBSAI)和聚1,3-丙二醇/1,4-丁二醇/癸二酸酯/己二酸酯/衣康酸酯)(PPBSeAI)的E分别为≈50.39%、48.55%和39.68%。结果表明,E对bpe的耐油性影响较大。室温浸泡IRM-903#油72 h后,bpe的质量和体积变化随着酯基质量分数的增加而减小,表明其耐油性能有所提高。酯基质量分数最高的PEPSAI橡胶具有较好的耐油性能和较低的Tg(耐低温性能),优于目前最常用的一种商用耐油橡胶丁腈橡胶(N230S)。因此,这项工作为获得具有实用价值的生物基耐油弹性体提供了一条有前途的策略。
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来源期刊
Macromolecular Rapid Communications
Macromolecular Rapid Communications 工程技术-高分子科学
CiteScore
7.70
自引率
6.50%
发文量
477
审稿时长
1.4 months
期刊介绍: Macromolecular Rapid Communications publishes original research in polymer science, ranging from chemistry and physics of polymers to polymers in materials science and life sciences.
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