State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University , Changchun 130012, People's Republic of China.
ACS Appl Mater Interfaces. 2017 Aug 30;9(34):29120-29129. doi: 10.1021/acsami.7b08636. Epub 2017 Aug 21.
It is challenging to develop healable elastomers with combined high mechanical strength and good elasticity. Herein, a simple strategy to develop high-performance elastomers that integrate high mechanical strength, enormous stretchability, good resilience, and healability is reported. Through simply complexing poly(acrylic acid) and poly(ethylene oxide) based on hydrogen-bonding interactions, transparent composite materials that perform as elastomers are generated. The as-prepared elastomers exhibit mechanical strength (true strength at break) and toughness (fracture energy) as high as 61 MPa and 22.9 kJ/m, respectively, and they can be stretched to >35 times their initial length and are able to return to their original dimensions following the removal of stress. Further, the elastomers are capable of healing from physical cuts/damages in a humid environment because of reformation of the reversible hydrogen bonds between the polymer components. The high mechanical strength of the elastomers is ascribed to the high degree of polymer chain entanglements and multiple hydrogen-bonding interactions in the composites. The reversible hydrogen bonds, which act as cross-linkages, facilitate the unfolding and sliding of the polymer chains in the composites, thereby endowing the elastomers with good elasticity and healability. Furthermore, flexible conductors with water-enabled healability were developed by drop-casting Ag nanowires on top of the elastomers.
开发兼具高机械强度和良好弹性的可修复弹性体极具挑战性。本文报道了一种简单的策略,用于开发综合高机械强度、巨大拉伸性、良好弹性和可修复性的高性能弹性体。通过简单地将基于氢键相互作用的聚丙烯酸和聚氧化乙烯复合,生成了表现为弹性体的透明复合材料。所制备的弹性体表现出高达 61 MPa 和 22.9 kJ/m 的机械强度(断裂时的真实强度)和韧性(断裂能),可拉伸至初始长度的>35 倍,并在去除应力后能够恢复到原始尺寸。此外,由于聚合物组分之间可逆氢键的重新形成,弹性体能够在潮湿环境中从物理切割/损坏中进行修复。弹性体的高机械强度归因于复合材料中聚合物链缠结和多重氢键相互作用的高度发达。可逆氢键作为交联点,促进了复合材料中聚合物链的展开和滑动,从而赋予弹性体良好的弹性和可修复性。此外,通过在弹性体顶部滴铸银纳米线,开发了具有水致修复能力的柔性导体。