Ye Guofeng, Huo Siqi, Wang Cheng, Zhang Qi, Wang Hao, Song Pingan, Liu Zhitian
Hubei Engineering Technology Research Center of Optoelectronic and New Energy Materials, School of Materials Science & Engineering, Wuhan Institute of Technology, Wuhan, 430205, China.
Centre for Future Materials, University of Southern Queensland, Springfield, 4300, Australia.
Small. 2024 Nov;20(45):e2404634. doi: 10.1002/smll.202404634. Epub 2024 Jul 31.
Despite great advances in vitrimer, it remains highly challenging to achieve a property portfolio of excellent mechanical properties, desired durability, and high fire safety. Thus, a catalyst-free, closed-loop recyclable transesterification vitrimer (TPN) with superior mechanical properties, durability, and fire retardancy is developed by introducing a rationally designed tertiary amine/phosphorus-containing reactive oligomer (TPN) into epoxy resin (EP). Because of strong covalent interactions between TPN and EP and its linear oligomer structure, as-prepared TPN achieves a tensile strength of 86.2 MPa and a toughness of 6.8 MJ m, superior to previous vitrimer counterparts. TPN containing 1.50 wt% phosphorus shows desirable fire retardancy, including a limiting oxygen index of 35.2% and a vertical burning (UL-94) V-0 classification. TPN features great durability and can maintain its structure integrity in 1 M HCl or NaOH solution for 100 days. This is because the tertiary amines are anchored within the cross-linked network and blocked by rigid P-containing groups, thus effectively suppressing the transesterification. Owing to its good chemical recovery, TPN can be used as a promising resin for creating recyclable carbon fiber-reinforced polymer composites. This work offers a promising integrated method for creating robust durable fire-safe vitrimers which facilitate the sustainable development of high-performance polymer composites.
尽管在热致互穿网络聚合物方面取得了巨大进展,但要实现兼具优异机械性能、理想耐久性和高消防安全性能的性能组合仍然极具挑战性。因此,通过将合理设计的含叔胺/磷反应性低聚物(TPN)引入环氧树脂(EP)中,开发出了一种具有优异机械性能、耐久性和阻燃性的无催化剂、闭环可回收的酯交换热致互穿网络聚合物(TPN)。由于TPN与EP之间存在强共价相互作用及其线性低聚物结构,所制备的TPN实现了86.2 MPa的拉伸强度和6.8 MJ·m的韧性,优于以往的热致互穿网络聚合物同类产品。含1.50 wt%磷的TPN具有理想的阻燃性,包括35.2%的极限氧指数和垂直燃烧(UL-94)V-0等级。TPN具有出色的耐久性,可在1 M HCl或NaOH溶液中保持其结构完整性达100天。这是因为叔胺锚定在交联网络中并被刚性含磷基团阻断,从而有效抑制了酯交换反应。由于其良好的化学回收性能,TPN可作为一种有前景的树脂用于制备可回收的碳纤维增强聚合物复合材料。这项工作为制备坚固耐用、防火安全的热致互穿网络聚合物提供了一种有前景的综合方法,有助于高性能聚合物复合材料的可持续发展。