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基于大豆油和狄尔斯-阿尔德键的生物质衍生快速重组粘合剂

Rapid Reassembly, Biomass-Derived Adhesive Based on Soybean Oil and Diels-Alder Bonds.

作者信息

Liu Zhiyong, Song Zhiguo, Lv Benrong, Qiu Zumin

机构信息

School of Chemistry and Chemical Engineering, Nanchang University, Nanchang 330031, China.

Huzhou Guoneng New Material Co., Ltd., Huzhou 313000, China.

出版信息

Polymers (Basel). 2023 Nov 16;15(22):4428. doi: 10.3390/polym15224428.

Abstract

Synthetic adhesives play a crucial role in holding together solid materials through interfacial interactions. Thermoplastic and thermosetting adhesives are important types of synthetic adhesives, with thermoplastic adhesives being reassemblable and thermosetting adhesives exhibiting high adhesive strength and creep resistance. However, there is a need to combine the advantages of both types and develop high bonding strength, reassemblable adhesives. Here, epoxidized soybean oil (ESO) was used to prepare adhesive networks and Diels-Alder bonds were incorporated to enhance reassembly ability. The ESO was functionalized with furyl groups and cross-linked via the reaction between furyl and imide groups to involve the Diels-Alder bonds. The resulting adhesive exhibited good solvent resistance and mechanical properties, which could be regulated by adjusting the quantity of cross-linker. The prepared adhesives also demonstrated self-healing capabilities, as the scratch on the surface gradually diminished with heating. Additionally, the adhesives showed the ability to undergo recycling without significant changes in properties. The prepared adhesives exhibited hydrophilicity and the flow characteristics during reassembly were characterized by a decrease in torque. This study provides a promising approach for the development of synthetic adhesives with reassembly ability, which has important implications for the field of bonding.

摘要

合成胶粘剂通过界面相互作用在将固体材料粘结在一起方面发挥着关键作用。热塑性和热固性胶粘剂是合成胶粘剂的重要类型,热塑性胶粘剂可重新组装,热固性胶粘剂具有高粘结强度和抗蠕变性。然而,需要结合这两种类型的优点,开发出高粘结强度、可重新组装的胶粘剂。在此,使用环氧化大豆油(ESO)制备胶粘剂网络,并引入狄尔斯-阿尔德键以增强重新组装能力。ESO用呋喃基官能化,并通过呋喃基与酰亚胺基团之间的反应交联以引入狄尔斯-阿尔德键。所得胶粘剂表现出良好的耐溶剂性和机械性能,可通过调整交联剂的量来调节。制备的胶粘剂还表现出自愈能力,因为表面划痕在加热时逐渐减少。此外,胶粘剂显示出可回收利用且性能无显著变化的能力。制备的胶粘剂表现出亲水性,重新组装过程中的流动特性通过扭矩降低来表征。本研究为开发具有重新组装能力的合成胶粘剂提供了一种有前景的方法,这对粘结领域具有重要意义。

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