基于Diels-Alder可逆反应的糠醇生物基自修复高分子材料

IF 1 4区 化学 Q4 POLYMER SCIENCE Polymer Science, Series B Pub Date : 2023-08-09 DOI:10.1134/S1560090423701051
Zhonglin Cao,  Xiaoling Zuo
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引用次数: 0

摘要

赋予生物基高分子材料自愈能力是扩大其应用范围的有效途径。Diels-Alder反应是一种有效的自愈方法。然而,由于DA键的可逆性,具有Diels-Alder基团的多功能单体合成的自愈材料具有较低的使用温度。本研究以糠醇为原料,以农作物为原料制备了支链聚甲基丙烯酸糠醇。以聚甲基丙烯酸糠酯和双马来酰亚胺为原料,基于Diels-Alder可逆反应成功合成了生物基自修复高分子材料。Diels-Alder正反反应在加热时发生,导致聚合物涂层上的裂缝自愈。提高了材料的热稳定性和使用温度。结果表明,合成的材料具有热可逆性和自愈性,具有很大的自愈涂层应用潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Bio-Based Self-Healing Polymeric Materials Derived from Furfuryl Alcohol Based on the Diels-Alder Reversible Reaction

To increase the range of applications of bio-based polymer materials by attributing them self-healing ability is an efficacious way. It is an effective method to use Diels-Alder reaction for self-healing. However, self-healing materials synthesized by multifunctional monomers with Diels-Alder groups possess a low use temperature due to reversibility of DA bonds. In this study, the branched poly(furfuryl methacrylate) was synthesized from furfuryl alcohol, which is a biobased raw material prepared from crops. Using poly(furfuryl methacrylate) and bismaleimide, biobased self-healing polymeric materials were synthesized successfully based on the Diels-Alder reversible reaction. The Diels-Alder direct and reverse reactions occurred upon heating, resulting in self-healing of cracks on the polymer coatings. The thermal stability and use temperature of materials were also improved. All results demonstrated that synthesized materials possessed the characteristics of thermo-reversibility and self-healing and held great potential for self-healing coating applications.

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来源期刊
Polymer Science, Series B
Polymer Science, Series B 化学-高分子科学
CiteScore
1.80
自引率
8.30%
发文量
58
审稿时长
>0 weeks
期刊介绍: Polymer Science, Series B is a journal published in collaboration with the Russian Academy of Sciences. Series B experimental and theoretical papers and reviews dealing with the synthesis, kinetics, catalysis, and chemical transformations of macromolecules, supramolecular structures, and polymer matrix-based composites (6 issues a year). All journal series present original papers and reviews covering all fundamental aspects of macromolecular science. Contributions should be of marked novelty and interest for a broad readership. Articles may be written in English or Russian regardless of country and nationality of authors. All manuscripts are peer reviewed
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