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具有超支化拓扑结构的坚韧环氧超分子热固性材料的闭环回收利用。

Closed-loop recycling of tough epoxy supramolecular thermosets constructed with hyperbranched topological structure.

作者信息

Zhang Junheng, Jiang Can, Deng Guoyan, Luo Mi, Ye Bangjiao, Zhang Hongjun, Miao Menghe, Li Tingcheng, Zhang Daohong

机构信息

Hubei R&D Center of Hyperbranched Polymers Synthesis and Applications, South-Central Minzu University, Wuhan, 430074, China.

Guangdong Provincial Laboratory of Chemistry and Fine Chemical Engineering Jieyang Center, Jieyang, 515200, China.

出版信息

Nat Commun. 2024 Jun 7;15(1):4869. doi: 10.1038/s41467-024-49272-3.

Abstract

The regulation of topological structure of covalent adaptable networks (CANs) remains a challenge for epoxy CANs. Here, we report a strategy to develop strong and tough epoxy supramolecular thermosets with rapid reprocessability and room-temperature closed-loop recyclability. These thermosets were constructed from vanillin-based hyperbranched epoxy resin (VanEHBP) through the introduction of intermolecular hydrogen bonds and dual dynamic covalent bonds, as well as the formation of intramolecular and intermolecular cavities. The supramolecular structures confer remarkable energy dissipation capability of thermosets, leading to high toughness and strength. Due to the dynamic imine exchange and reversible noncovalent crosslinks, the thermosets can be rapidly and effectively reprocessed at 120 °C within 30 s. Importantly, the thermosets can be efficiently depolymerized at room temperature, and the recovered materials retain the structural integrity and mechanical properties of the original samples. This strategy may be employed to design tough, closed-loop recyclable epoxy thermosets for practical applications.

摘要

对于环氧共价自适应网络(CANs)而言,其拓扑结构的调控仍是一项挑战。在此,我们报道了一种策略,用于开发具有快速再加工性和室温闭环可回收性的强韧环氧超分子热固性材料。这些热固性材料由香草醛基超支化环氧树脂(VanEHBP)构建而成,通过引入分子间氢键和双动态共价键,以及形成分子内和分子间空腔。超分子结构赋予热固性材料显著的能量耗散能力,从而导致高韧性和高强度。由于动态亚胺交换和可逆的非共价交联,热固性材料可在120℃下30秒内快速有效地进行再加工。重要的是,热固性材料可在室温下高效解聚,回收的材料保留了原始样品的结构完整性和机械性能。该策略可用于设计用于实际应用的坚韧、闭环可回收环氧热固性材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a30b/11161517/183007f01509/41467_2024_49272_Fig2_HTML.jpg

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