材料科学
超分子化学
自愈
韧性
超分子聚合物
聚氨酯
形状记忆合金
聚合物
控制重构
共价键
弹性体
纳米技术
氢键
高分子科学
复合材料
分子
计算机科学
有机化学
医学
化学
替代医学
病理
嵌入式系统
作者
Tianze Chen,Mingchao Shao,Yaoming Zhang,Xinrui Zhang,Jing Xu,Jianming Li,Tingmei Wang,Qihua Wang
标识
DOI:10.1021/acsami.4c10805
摘要
Developing multifunctional polymers with excellent mechanical properties, outstanding shape memory characteristics, and good self-healing properties is a formidable challenge. Inspired by the woven cross-linking strategy, a series of supramolecular polyurethane (PU) with an interwoven network structure composed of covalent and supramolecular cross-linking nodes have been successfully synthesized by introducing the ureido-pyrimidinone (UPy) motifs into the PU skeleton. The best-performing sample exhibited ultrahigh strength (∼77.2 MPa) and toughness (∼312.7 MJ m–3), along with an ideal self-healing efficiency (up to 90.8% for 6 h) and satisfactory temperature-responsive shape memory effect (shape recovery rates up to 96.9%). Furthermore, it ensured recyclability. These favorable properties are mainly ascribed to the effective dissipation of strain energy due to the disassembly and reconfiguration of supramolecular nodes (i.e., quadruple hydrogen bonds (H-bonds) between UPy units), as well as the covalent cross-linking nodes that maintain the integrity of the polymer network structure. Thus, our work provides a universal strategy that breaks through the traditional contradictions and paves the way for the commercialization of high-performance multifunctional PU elastomers.
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