单体
热固性聚合物
高分子化学
二硫键
玻璃化转变
共价键
应力松弛
环氧树脂
材料科学
烯丙基重排
放松(心理学)
化学
复合数
激进的
傅里叶变换红外光谱
链式转移
动态共价化学
聚合
聚合物
化学工程
活化能
战术性
压力(语言学)
大气温度范围
有机化学
二硫化碳
动态力学分析
作者
Alexis Millan,Alexandre Wodrinski,Marc Guerre
标识
DOI:10.1002/anie.202519880
摘要
Abstract Covalent adaptable networks (CANs) have emerged as a promising class of materials that incorporate dynamic covalent bonds, enabling reprocessability and recyclability while retaining the advantageous properties of traditional thermosets. Herein, we report a class of radical‐based vitrimers employing addition–fragmentation chain transfer reactions. The vitrimer was synthesized via crosslinking of an epoxy monomer containing embedded allylic functionalities capable of undergoing exchange through a degenerative transfer mechanism. The generation of thiyl radicals necessary for the exchange is triggered by a disulfide‐containing hardener which reversibly generates radicals upon thermal activation. Vitrimers were prepared with varying proportions of the disulfide hardener relative to a permanent hardener. All materials exhibited stress relaxation, with relaxation times dependent on the disulfide content. Incorporation of only 10 mol% of disulfide resulted in a relaxation time of 21 min at 200 °C, demonstrating dynamic behavior. Full reversibility was confirmed after three reprocessing cycles, with no significant change in glass transition temperature ( T g), storage modulus, and FTIR spectra. Additionally, a model reaction was conducted to prove the exchange mechanism, revealing an activation energy in the range of 48 (± 4) kJ.mol −1 . This study introduces a novel approach to thermally activated, radical‐based vitrimers, expanding the design for recyclable thermoset materials.
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