堆积
层状结构
超分子化学
超分子聚合物
弹性体
氢键
极限抗拉强度
小角X射线散射
韧性
聚酰亚胺
化学
高分子化学
复合材料
聚合物
材料科学
化学工程
结晶学
分子
图层(电子)
有机化学
晶体结构
散射
工程类
物理
光学
作者
Stefano Burattini,Barnaby W. Greenland,Daniel Hermida-Merino,Wengui Weng,Jonathan E. Seppala,Howard M. Colquhoun,Wayne Hayes,Michael E. Mackay,Ian W. Hamley,Stuart J. Rowan
摘要
An elastomeric, healable, supramolecular polymer blend comprising a chain-folding polyimide and a telechelic polyurethane with pyrenyl end groups is compatibilized by aromatic π−π stacking between the π-electron-deficient diimide groups and the π-electron-rich pyrenyl units. This interpolymer interaction is the key to forming a tough, healable, elastomeric material. Variable-temperature FTIR analysis of the bulk material also conclusively demonstrates the presence of hydrogen bonding, which complements the π−π stacking interactions. Variable-temperature SAXS analysis shows that the healable polymeric blend has a nanophase-separated morphology and that the X-ray contrast between the two types of domain increases with increasing temperature, a feature that is repeatable over several heating and cooling cycles. A fractured sample of this material reproducibly regains more than 95% of the tensile modulus, 91% of the elongation to break, and 77% of the modulus of toughness of the pristine material.
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