共聚物
聚合物
胶粘剂
材料科学
单体
固化(化学)
拓扑(电路)
高分子化学
苯乙烯
链条(单位)
化学工程
乙烯
组分(热力学)
高分子科学
原材料
反应条件
纳米技术
长链
明星(博弈论)
作者
J. H. Mo,Tingting Yu,Tonghao Zhu,Sha Wang,Chen Chen,Huijian Ye,Weili Yan,Yufei Li,Mingxing An,Lixin Xu
出处
期刊:Macromolecules
[American Chemical Society]
日期:2026-02-25
卷期号:59 (7): 4234-4246
标识
DOI:10.1021/acs.macromol.5c03460
摘要
The development of high-performance, recyclable adhesives with self-healing ability is highly desirable for advanced electronic packaging. With this purpose, polymer reversible cross-linking has been intensively researched in recent years. Despite the progress, the existing strategies inevitably involve the use of some particular, reversibly cross-linkable components usually at high proportions, which limits their scalable applications. Herein, we demonstrate a strategy for achieving efficient polymer reversible cross-linking based on chain topology design. A set of hyperbranched star copolymers, HBPE@PSF, which mainly consist of ethylene and styrene units with a small amount of reversible cross-linkable component (FMA units, 0.30 to 0.80 mol %), were designed and synthesized. Then curing experiments on them were conducted under various controlled conditions to investigate their reversible cross-linking behavior. It has been testified that the resultant copolymers can form a thermally reversible cross-link structure via the DA reaction at efficiencies considerably higher than the linear analogues, PSF. This further imparts the HBPE@PSF with well-combined bonding, self-healing, and recyclable performances, although the copolymers contain a very low content of reversible cross-linkable components. By following this strategy, a series of reversible cross-linkable, hyperbranched star copolymers have been successfully synthesized from various different monomers, demonstrating its good universality. This research paves the way to produce high-performance, recyclable adhesives with various conventional monomers as the main raw stock.
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