材料科学
聚合物
粘附
玻璃化转变
超分子化学
纳米技术
退火(玻璃)
化学工程
超分子聚合物
可重用性
超分子组装
重新使用
离解(化学)
胶粘剂
自组装
化学键
热的
制作
纳米结构
热稳定性
作者
Kenji Yamaoka,Takuma Wada,Iori Ogasa,Takeru Komyo,Chao Luo,Ryohei Ikura,Masahiro Hino,Masako Yamada,Hideki Seto,Yoshihisa Fujii,Yasutomo UETSUJI,Yoshinori Takashima
标识
DOI:10.1002/adma.202507939
摘要
) of the polymers, chain mobility and complex reformation are simultaneously optimized, leading to enhanced interdiffusion and bond recombination at the adhesion interface. Neutron reflectivity (NR) measurements with deuterium labeling revealed that the interfacial width increased with annealing temperature, reaching up to 24.4 nm at 200 °C after 24 hours. The presence of reversible bonds suppressed polymer interdiffusion despite promoting adhesion strength. The resulting materials exhibit excellent reusability and dismantlability under mild stimuli, with strong potential for applications in recyclable electronics, automotive manufacturing, and temporary assembly technologies.
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