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Self-Healing Materials from V- and H-Shaped Supramolecular Architectures

机译:V型和H型超分子体系结构的自修复材料

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摘要

Integrating self-healing capability into supramolecular architectures is an interesting strategy, and can considerably enhance the performance and broaden the scope of applications for this important class of polymers. Herein we report the rational design of novel V-shaped barbiturate (Ba) functionalized soft-hard-soft triblock copolymers with a reversible supramolecular healing motif (Ba) in the central part of the hard block, which undergoes autonomic repair at 30 degrees C. The designed synthesis also offers a suitable macromolecular building block to further self-assemble with heterocomplementary alpha, omega-Hamilton wedge (HW) functionalized polyisoprene (PI; HW-PI-HW), resulting in an H-shaped supramolecular architecture with efficient self-healing capabilities that can recover up to around 95% of the original mechanical performance at 30 degrees C within 24 h.
机译:将自我修复功能集成到超分子体系结构是一种有趣的策略,它可以大大提高性能,并拓宽此类重要聚合物的应用范围。本文中,我们报告了在硬嵌段中心具有可逆的超分子修复基序(Ba)的新型V形巴比妥酸酯(Ba)功能化的软-硬-软三嵌段共聚物的合理设计,该共聚物在30°C时进行了自主修复。设计的合成方法还提供了合适的大分子结构单元,可与杂互补α,欧米茄-汉密尔顿楔形(HW)功能化的聚异戊二烯(PI; HW-PI-HW)进一步自组装,从而形成具有高效自组装功能的H形超分子结构能够在24小时内在30摄氏度恢复高达原始机械性能约95%的修复能力。

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