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生物质衍生的环氧-胺热固性材料通过醇解实现闭环可回收性

Closed-loop recyclability of a biomass-derived epoxy-amine thermoset by methanolysis.

作者信息

Wu Xianyuan, Hartmann Peter, Berne Dimitri, De Bruyn Mario, Cuminet Florian, Wang Zhiwen, Zechner Johannes Matthias, Boese Adrian Daniel, Placet Vincent, Caillol Sylvain, Barta Katalin

机构信息

Stratingh Institute for Chemistry, University of Groningen, 9747AG Groningen, Netherlands.

Institute of Chemistry, Organic and Bioorganic Chemistry, University of Graz, 8010 Graz, Austria.

出版信息

Science. 2024 Apr 12;384(6692):eadj9989. doi: 10.1126/science.adj9989.

Abstract

Epoxy resin thermosets (ERTs) are an important class of polymeric materials. However, owing to their highly cross-linked nature, they suffer from poor recyclability, which contributes to an unacceptable level of environmental pollution. There is a clear need for the design of inherently recyclable ERTs that are based on renewable resources. We present the synthesis and closed-loop recycling of a fully lignocellulose-derivable epoxy resin (DGF/MBCA), prepared from dimethyl ester of 2,5-furandicarboxylic acid (DMFD), 4,4'-methylenebis(cyclohexylamine) (MBCA), and glycidol, which displays excellent thermomechanical properties (a glass transition temperature of 170°C, and a storage modulus at 25°C of 1.2 gigapascals). Notably, the material undergoes methanolysis in the absence of any catalyst, regenerating 90% of the original DMFD. The diamine MBCA and glycidol can subsequently be reformed by acetolysis. Application and recycling of DGF/MBCA in glass and plant fiber composites are demonstrated.

摘要

环氧树脂热固性材料(ERTs)是一类重要的高分子材料。然而,由于其高度交联的性质,它们的可回收性较差,这导致了不可接受的环境污染水平。显然需要设计基于可再生资源的固有可回收ERTs。我们展示了一种完全由木质纤维素衍生的环氧树脂(DGF/MBCA)的合成和闭环回收,该树脂由2,5-呋喃二甲酸二甲酯(DMFD)、4,4'-亚甲基双(环己胺)(MBCA)和缩水甘油制备,具有优异的热机械性能(玻璃化转变温度为170°C,25°C下的储能模量为1.2吉帕斯卡)。值得注意的是,该材料在没有任何催化剂的情况下进行甲醇解,可再生90%的原始DMFD。二胺MBCA和缩水甘油随后可通过乙酰解进行重整。展示了DGF/MBCA在玻璃和植物纤维复合材料中的应用和回收。

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