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Self-healing and thermoreversible rubber from supramolecular assembly

机译:超分子组装的自修复和热可逆橡胶

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Rubbers exhibit enormous extensibility up to several hundred per cent, compared with a few per cent for ordinary solids, and have the ability to recover their original shape and dimensions on release of stress. Rubber elasticity is a property of macromole-cules that are either covalently cross-linked1 or connected in a network by physical associations such as small glassy or crystalline domains, ionic aggregates or multiple hydrogen bonds. Covalent cross-links or strong physical associations prevent flow and creep. Here we design and synthesize molecules that associate together to form both chains and cross-links via hydrogen bonds. The system shows recoverable extensibility up to several hundred per cent and little creep under load. In striking contrast to conventional cross-linked or thermoreversible rubbers made of macromolecules, these systems, when broken or cut, can be simply repaired by bringing together fractured surfaces to self-heal at room temperature. Repaired samples recuperate their enormous extensibility. The process of breaking and healing can be repeated many times. These materials can be easily processed, re-used and recycled. Their unique self-repairing properties, the simplicity of their synthesis, their availability from renewable resources and the low cost of raw ingredients (fatty acids and urea) bode well for future applications.
机译:与普通固体的百分之几相比,橡胶具有高达几百%的巨大延展性,并且能够在释放应力时恢复其原始形状和尺寸。橡胶弹性是大分子的特性,这些分子通过诸如小玻璃或晶域,离子聚集体或多个氢键等物理缔合共价交联或连接在网络中。共价交联或牢固的物理缔合可防止流动和蠕变。在这里,我们设计并合成通过氢键结合在一起以形成链和交联的分子。该系统显示出可恢复的可扩展性,最高可达到百分之百,并且在负载下几乎没有蠕变。与常规的由大分子制成的交联或热可逆橡胶形成鲜明对比的是,这些系统在断裂或切割后,只需将断裂的表面在室温下自愈即可轻松修复。修复后的样品可恢复其巨大的可扩展性。断裂和愈合的过程可以重复很多次。这些材料可以轻松进行处理,重复使用和回收。它们独特的自我修复性能,合成的简便性,可再生资源的可用性以及原材料(脂肪酸和尿素)的低成本,为未来的应用提供了良好的条件。

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