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具有形状记忆特性的可回收、可修复和可重塑(3R)热固性材料,源自生物基环氧化植物油。

Recyclable, Repairable, and Reshapable (3R) Thermoset Materials with Shape Memory Properties from Bio-Based Epoxidized Vegetable Oils.

作者信息

Di Mauro Chiara, Malburet Samuel, Graillot Alain, Mija Alice

机构信息

Université Côte d'Azur, Institut de Chimie de Nice, UMR CNRS 7272, 28 Avenue Valrose, Nice Cedex 2 06108, France.

SPECIFIC POLYMERS, 150 Avenue des Cocardières, Zac Via Domitia, Castries 34160, France.

出版信息

ACS Appl Bio Mater. 2020 Nov 16;3(11):8094-8104. doi: 10.1021/acsabm.0c01199. Epub 2020 Nov 2.

Abstract

The preparation of thermosets based on epoxidized vegetable oils (EVOs) involved a peculiar attention in recent years; however, most of them cannot be recycled once cross-linked. In the present work, epoxy thermosetting resins like-vitrimers with dynamic disulfide covalent bonds were prepared by copolymerizing twelve EVOs with 2,2'-dithiodibenzoic acid, as hardener. Here, we show for the first time the reprocessability, repairability, and recyclability properties of EVOs thermosets. The 3R abilities were evaluated in correlation with the EVO epoxy contents, which influence the final thermo-mechanical properties of the recycled material. The virgin versus recycled materials' comparison was studied by FT-IR, DSC, TGA, and DMA, also comparing their swelling ability and high gel content. The study investigates, in addition, the excellent shape memory properties of the reprocessed EVOs/disulfide materials.

摘要

近年来,基于环氧化植物油(EVO)制备热固性材料受到了特别关注;然而,它们中的大多数一旦交联就无法回收利用。在本工作中,通过将十二种EVO与作为固化剂的2,2'-二硫代二苯甲酸共聚,制备了具有动态二硫键共价键的环氧热固性类 Vitrimer 树脂。在此,我们首次展示了EVO热固性材料的可再加工性、可修复性和可回收性。通过与影响回收材料最终热机械性能的EVO环氧含量相关联,评估了这三种性能。通过傅里叶变换红外光谱(FT-IR)、差示扫描量热法(DSC)、热重分析(TGA)和动态热机械分析(DMA)对原始材料与回收材料进行了比较,还比较了它们的溶胀能力和高凝胶含量。此外,该研究还考察了再加工的EVO/二硫键材料优异的形状记忆性能。

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