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具有闭环可回收性的可再加工三酮烯胺基 Vitrimers

Reprocessible Triketoenamine-Based Vitrimers with Closed-Loop Recyclability.

作者信息

Hu Zeyou, Hu Fan, Deng Lifeng, Yang Yumin, Xie Qiujian, Gao Zhu, Pan Chunyue, Jin Yinghua, Tang Juntao, Yu Guipeng, Zhang Wei

机构信息

College of Chemistry and Chemical Engineering, Hunan Key Laboratory of Micro & Nano Materials Interface Science, Central South University, Changsha, 410083, China.

Department of Chemistry, University of Colorado Boulder, Boulder, CO, 80309, USA.

出版信息

Angew Chem Int Ed Engl. 2023 Aug 21;62(34):e202306039. doi: 10.1002/anie.202306039. Epub 2023 Jul 13.

Abstract

Development of thermosets that can be repeatedly recycled via both chemical route (closed-loop) and thermo-mechanical process is attractive and remains an imperative task. In this work, we reported a triketoenamine based dynamic covalent network derived from 2,4,6-triformylphloroglucinol and secondary amines. The resulting triketoenamine based network does not have intramolecular hydrogen bonds, thus reducing its π-electron delocalization, lowering the stability of the tautomer structure, and enabling its dynamic feature. By virtue of the highly reversible bond exchange, this novel dynamic covalent bond enables the easy construction of highly crosslinked and chemically reprocessable networks from commercially available monomers. The as-made polymer monoliths exhibit high mechanical properties (tensile strength of 79.4 MPa and Young's modulus of 571.4 MPa) and can undergo a monomer-network-monomer (yields up to 90 %) recycling mediated by an aqueous solution, with the new-generation polymer capable of restoring the material strength to its original state. In addition, owing to its dynamic nature, a catalyst-free and low-temperature reprogrammable covalent adaptable network (vitrimer) was achieved. The design concept reported herein can be applied to the development of other novel vitrimers with high repressibility and recyclability, and sheds light on future design of sustainable polymers with minimal environmental impact.

摘要

开发能够通过化学途径(闭环)和热机械过程进行反复回收的热固性材料具有吸引力,并且仍然是一项紧迫的任务。在这项工作中,我们报道了一种基于三酮烯胺的动态共价网络,它由2,4,6-三甲基间苯三酚和仲胺衍生而来。所得的基于三酮烯胺的网络没有分子内氢键,因此减少了其π电子离域,降低了互变异构体结构的稳定性,并使其具有动态特性。凭借高度可逆的键交换,这种新型动态共价键能够由市售单体轻松构建高度交联且可化学再加工的网络。所制备的聚合物整体材料表现出高机械性能(拉伸强度为79.4 MPa,杨氏模量为571.4 MPa),并且可以通过水溶液介导进行单体-网络-单体(产率高达90%)的回收,新一代聚合物能够将材料强度恢复到原始状态。此外,由于其动态性质,实现了一种无催化剂且低温可重新编程的共价自适应网络(玻璃态高聚物)。本文报道的设计概念可应用于开发其他具有高可压制性和可回收性的新型玻璃态高聚物,并为未来设计对环境影响最小的可持续聚合物提供了思路。

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