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Key-and-lock commodity self-healing copolymers

机译:钥匙锁商品自修复共聚物

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摘要

Self-healing materials are notable for their ability to recover from physical or chemical damage. We report that commodity copolymers, such as poly(methyl methacrylate)-butyl acrylate [p(MMABA)] and their derivatives, can self-heal upon mechanical damage. This behavior occurs in a narrow compositional range for copolymer topologies that are preferentially alternating with a random component (alternating/random) and is attributed to favorable interchain van der Waals forces forming key-and-lock interchain junctions. The use of van der Waals forces instead of supramolecular or covalent rebonding or encapsulated reactants eliminates chemical and physical alterations and enables multiple recovery upon mechanical damage without external intervention. Unlike other self-healing approaches, perturbation of ubiquitous van der Waals forces upon mechanical damage is energetically unfavorable for interdigitated alternating/random copolymer motifs that facilitate self-healing under ambient conditions.
机译:自修复材料以其从物理或化学损坏中恢复的能力而著称。我们报告说,商品共聚物,例如聚(甲基丙烯酸甲酯)/丙烯酸正丁酯[p(MMA / nBA)]及其衍生物,在受到机械损坏时可以自愈。对于优选与无规组分交替(交替/无规)的共聚物拓扑结构,此行为会在狭窄的组成范围内发生,并且归因于形成键与锁链间连接的有利链间范德华力。使用范德华力代替超分子或共价重键或包封的反应物可消除化学和物理变化,并在机械损坏时无需外部干预即可进行多次修复。与其他自愈方法不同,机械损坏时普遍存在的范德华力的扰动在能量上不利于在环境条件下促进自愈的叉指交替/无规共聚物图案。

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