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可多次循环利用的无催化剂动态热固性3D打印光聚合物

Repeatedly Recyclable 3D Printing Catalyst-Free Dynamic Thermosetting Photopolymers.

作者信息

Cui Jingjing, Liu Fukang, Lu Zhe, Feng Shiwei, Liang Chen, Sun Yongding, Cui Jin, Zhang Biao

机构信息

Frontiers Science Center for Flexible Electronics (FSCFE), Research & Development Institute of Northwestern Polytechnical University in Shenzhen, Ningbo Institute of Northwestern Polytechnical University, Northwestern Polytechnical University, 127 West Youyi Road, Xi'an, 710072, China.

School of Information and Science Technology, Northwest University, 1 Xuefu Street, Xi'an, 710127, China.

出版信息

Adv Mater. 2023 May;35(20):e2211417. doi: 10.1002/adma.202211417. Epub 2023 Apr 2.

Abstract

Photo-curing 3D printing technology has promoted the advanced manufacturing in various fields, but has exacerbated the environmental crisis by the demand for the chemically cross-linked thermosetting photopolymers. Here, the authors report a generic strategy to develop catalyst-free dynamic thermosetting photopolymers, based on photopolymerization and transesterification, that can enable users to realize repeatable 3D printing, providing a practical solution to the environmental challenges. That the β-carbonyl group adjacent to the ester group greatly accelerates the rate of transesterification is demonstrated. The generated resins from the immobilization of the catalyst-free reversible bonds into the photopolymers leads to a dynamic covalently crosslinked network structure upon UV based 3D printing, which exhibit controllable mechanical properties with elastomeric behaviors to thermadapt shape memory polymers. Furthermore, the resulting network can be reverted into an acrylate-functioned photopolymer that is suitable for 3D printing again, presenting an on-demand, repeatedly recyclable thermosetting photopolymer platform for sustainable 3D printing.

摘要

光固化3D打印技术推动了各个领域的先进制造,但对化学交联热固性光聚合物的需求加剧了环境危机。在此,作者报告了一种通用策略,用于开发基于光聚合和酯交换反应的无催化剂动态热固性光聚合物,该策略可使用户实现可重复的3D打印,为环境挑战提供了切实可行的解决方案。研究表明,酯基相邻的β-羰基极大地加速了酯交换反应速率。将无催化剂可逆键固定到光聚合物中所生成的树脂,在基于紫外光的3D打印过程中形成动态共价交联网络结构,该结构表现出可控的机械性能,兼具弹性体行为和热适应形状记忆聚合物的特性。此外,所得网络可恢复为适合再次进行3D打印的丙烯酸酯功能化光聚合物,为可持续3D打印提供了一个按需、可重复回收的热固性光聚合物平台。

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