材料科学
放松(心理学)
共价键
应力松弛
蠕动
聚合物
网络共价键合
流变学
玻璃化转变
动态共价化学
分子动力学
化学物理
动力学(音乐)
纳米技术
计算化学
分子
复合材料
有机化学
超分子化学
化学
物理
心理学
社会心理学
声学
作者
Aleix Costa Cornellà,Francesca Furia,Guy Van Assche,Joost Brancart
标识
DOI:10.1002/adma.202407663
摘要
Abstract Dynamic polymer networks offer a promising solution to key challenges in polymers such as recyclability, processability, and damage repair. However, the trade‐off between combining facile processability, fast self‐healing, and high creep resistance remains a major obstacle to implementation. To overcome this, two very distinct dynamic covalent chemistries, Diels–Alder and transesterification, is combined in a single network. The resulting dual dynamic networks offer an unprecedented set of properties and control over the relaxation times. The system decouples the relaxation dynamics of the network from the spatial motifs, and the tuning of the ratio between chemistries enables to control of the relaxation dynamics over six orders of magnitude. Taking advantage of this control, the composition and rheological behavior is optimized to drastically improve the resolution for extrusion‐based additive manufacturing of dynamic covalent networks. Additionally, two well‐defined and separated stress relaxation peaks are observed at compositions close to 50% of each dynamic chemistry, accentuating the double character of the system's relaxation dynamics. This atypical situation, enables to preparation of self‐healing materials with negligible creep, and with shape‐memory properties solely leveraging the two distinct relaxation dynamics, instead of the glass transition temperature or the melting point.
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