蜘蛛丝
材料科学
丝绸
芳纶
共价键
复合材料
蜘蛛
聚酰胺
氢键
超分子化学
高分子科学
高分子化学
化学工程
纤维
分子
化学
有机化学
工程类
动物
生物
作者
Junpeng Mi,Xue Li,Shiwei Niu,Xingping Zhou,Yihang Lu,Yuchen Yang,Yuan Sun,Qing Meng
标识
DOI:10.1016/j.actbio.2024.01.004
摘要
Achieving ultra-high tensile strength and exceptional toughness is a longstanding goal for structural materials. However, previous attempts using covalent and non-covalent bonds have failed, leading to the belief that these two properties are mutually exclusive. Consequently, commercial fibers have been forced to compromise between tensile strength and toughness, as seen in the differences between nylon and Kevlar. To address this challenge, we drew inspiration from the disparate tensile strength and toughness of nylon and Kevlar, both of which are polyamide fibers, and developed an innovative approach that combines specific intermolecular disulfide bonds and reversible hydrogen bonds to create ultra-strong and ultra-tough polyamide spider silk fibers. Our resulting Supramolecular polyamide spider silk, which has a maximum molecular weight of 1084 kDa, exhibits high tensile strength (1180 MPa) and extraordinary toughness (433 MJ/m
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