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
分子
图层(电子)
有机化学
散射
物理
光学
工程类
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 pi-pi stacking between the pi-electron-deficient diimide groups and the pi-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 pi-pi 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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