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用于抗冲击应用的无色、极坚韧、超自恢复和可修复的聚(聚氨酯脲)弹性体的分子工程。

Molecular engineering of a colorless, extremely tough, superiorly self-recoverable, and healable poly(urethane-urea) elastomer for impact-resistant applications.

机构信息

School of Chemical Engineering, Nanjing University of Science and Technology, 210094, China.

出版信息

Mater Horiz. 2021 Aug 1;8(8):2238-2250. doi: 10.1039/d1mh00548k. Epub 2021 Jun 21.

Abstract

Polyurethane or polyurea elastomers with superb mechanical strength and toughness, good self-recoverability and healable characteristics are of key significance for practical applications. However, some mutually exclusive conflicts among these properties make it challenging to optimize them simultaneously. Herein, we report a facile strategy to fabricate a colorless healable poly(urethane-urea) elastomer with the highest reported mechanical toughness and recoverable energy dissipation capability (503.3 MJ m and 37.3 MJ m recovered after 7× stretching). These results were achieved via implanting a large number of irregularly arranged urea H-bonds into units of hard domains of weak and soft, self-healing polymer, which led to a dramatic increase in the Young's modulus, tensile strength, toughness, and fracture energy, while maintaining dynamic adaptiveness and responsiveness. Similar to other external stimuli, such as heat, light, or electricity, etc., trace solvent is capable of dissociating noncovalent crosslinks, promoting the mobility of polymer chains surrounding the fracture surface, and thus endowing the elastomer with healability. Impressively, this elastomer possessed outstanding impact-resistance and energy-absorbing ability, even under relatively high temperature. Moreover, it recovered this functionality even after severe deformation or accidental mechanical damage.

摘要

具有优异机械强度和韧性、良好自恢复性和可修复特性的聚氨酯或聚脲弹性体对于实际应用具有重要意义。然而,这些性能之间存在一些相互排斥的矛盾,使得它们难以同时得到优化。在此,我们报告了一种简便的策略,可制备出一种无色可修复的聚(聚氨酯-脲)弹性体,其机械韧性和可恢复的能量耗散能力达到了最高水平(7 次拉伸后的 503.3 MJ m 和 37.3 MJ m)。这些结果是通过在弱和软的自修复聚合物的硬域单元中植入大量不规则排列的脲氢键来实现的,这导致杨氏模量、拉伸强度、韧性和断裂能显著增加,同时保持了动态适应性和响应性。类似于其他外部刺激,如热、光或电等,痕量溶剂能够使非共价交联解离,促进断裂表面周围聚合物链的迁移,从而赋予弹性体可修复性。令人印象深刻的是,这种弹性体具有出色的抗冲击性和吸能能力,即使在相对较高的温度下也是如此。此外,即使在严重变形或意外机械损伤后,它也能恢复这一功能。

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