共价键
材料科学
离解(化学)
网络共价键合
机械强度
复合材料
水溶液
还原(数学)
动态力学分析
理论(学习稳定性)
降级(电信)
热稳定性
化学键
对偶(语法数字)
工作(物理)
动态共价化学
键裂
动态平衡
纳米技术
债券
粘结强度
单一债券
机械设计
化学稳定性
机械系统
分子动力学
化学工程
作者
Yuhan Yin,Shijia Yang,Yong Zhou,ZhuSheng Yang,Zhi Qiao,Fu‐Lin Gao,Pan Ma,Qian-Nan Bi,Shuaiyuan Wang,Leiyu Chen,Wangmao Tian,Wenxing Liu,Jian Xu,Ning Zhao
标识
DOI:10.1038/s41467-026-70151-6
摘要
Compared to classic thermosets, the reprocessability of covalent adaptable networks (CANs) endowed by dynamic covalent bonds (DCBs) often comes at the expense of mechanical performance and thermomechanical stability. Herein, we report a "High Activity & Low Content" strategy for CANs to achieve superior thermomechanical stability, which is enabled by dynamic N-hydroxyphthalimide-urethane bonds (NUBs). The catalyst-free addition reaction between N-hydroxyphthalimides and isocyanates proceeds to a near-quantitative conversion within 2 h at room temperature in dimethyl sulfoxide, while the formed bonds dissociate even up to ~ 28% at 120 °C. The dual high activity, characterized by a high degree of dissociation and fast association kinetics, allows for an effective reduction in DCB content within CANs while preserving their dynamic characteristics. We incorporate only 5 mol% of dynamic units to develop poly(N-hydroxyphthalimide-urethanes) (PNU) networks. The "High Activity & Low Content" design endows PNUs with superior mechanical properties, exceptional crack tolerance, and remarkable mechanical stability at high temperatures. Furthermore, even with minimal DCB participation, the PNUs exhibit excellent reprocessability and mild degradability in neutral aqueous conditions. This study proposes a compelling strategy that enables CANs to achieve excellent reprocessability while retaining their mechanical strength and thermomechanical robustness-overcoming the traditional trade-off between these properties.
科研通智能强力驱动
Strongly Powered by AbleSci AI