面向可回收的高性能弹性体:自组装,动态共价化学和可定制性质
Xuan Qin1, Yushu Tian1, Hengheng Zhao1
1State Key Laboratory of Organic-Inorganic Composites, College of Materials Science and Engineering, Beijing University of Chemical Technology, Beijing, 100029, P. R. China.
Advanced materials (Deerfield Beach, Fla.)
|December 12, 2025
概括
开发高性能,可回收弹性体对于可持续性至关重要. 本综述探讨了微相工程与动态共价化学的整合,以创建适用于苛刻应用的先进材料.
科学领域:
- 材料科学 材料科学 材料科学
- 聚合物化学 聚合物化学
背景情况:
- 像聚氨这样的高性能弹性体对于苛刻的应用至关重要,因为它们的性和灵活性来自微相分离结构.
- 目前面临的挑战包括满足极端的运营需求和解决可持续性问题,特别是关于生命周期末期管理和可回收性.
研究的目的:
- 审查结合微相工程和弹性体中的动态共价化学的综合策略.
- 探索创造高性能,可回收弹性体的潜力,以便实际部署.
主要方法:
- 讨论了表征方法和分子设计的进步,以优化弹性质的特性.
- 突出了动态共价化学在使网络拓重新排列和再处理性中的作用.
- 审查了将分子交换与宏观性质联系起来的共价适应性网络的理论框架.
主要成果:
- 动态共价化学允许在交联网络中进行拓重新排列,而不会损害完整性,从而实现再处理性.
- 将动态共价化学纳入聚氨弹性体中,有助于闭环循环回收和可持续的纳米复合材料设计.
- 这些策略保留了弹性体的机械强度和高性能.
结论:
- 整合方法弥合微相工程和动态网络化学是推动高性能可回收弹性体的关键.
- 需要进一步的研究和开发,以克服这些可持续材料实际部署的挑战.
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