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首页> 外文期刊>Macromolecular rapid communications: Publishing the newsletters of the European Polymer Federation >A Highly Stretchable Polymer that Can Be Thermally Healed at Mild Temperature
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A Highly Stretchable Polymer that Can Be Thermally Healed at Mild Temperature

机译:一种可拉伸的聚合物,可以在温和的温度下进行热修复

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摘要

Combining stretchability and self-healing properties in a man-made material is a challenging task. For an efficient self-healing material, weaker dynamic or reversible bonds should be presented as crosslinks so that they will first break upon damage and then reform after healing, which is not favorable when developing elastic materials. In this work, by incorporating dynamic Fe(III)-triazole coordination bonds into polydimethylsiloxane (PDMS) backbone, a highly elastic polymer is obtained that can be thermally healed at mild temperature. The as-prepared polymer can be stretched to 3400% strain at low loading speed (1 mm min(-1)). When damaged, the polymer can be thermally healed at 60 degrees C for 20 h with a healing efficiency of over 90%. The good mechanical and healable properties of this polymer can be ascribed to the unique coordination bond strength and coordination conformation of Fe(III)-triazole coordination complex.
机译:在人造材料中结合可拉伸性和自我修复特性是一项艰巨的任务。对于有效的自修复材料,较弱的动态或可逆键应作为交联键出现,这样它们会首先在破坏时断裂,然后在愈合后重新形成,这对开发弹性材料不利。在这项工作中,通过将动态Fe(III)-三唑配位键结合到聚二甲基硅氧烷(PDMS)骨架中,可以得到可以在温和的温度下热修复的高弹性聚合物。所制备的聚合物可以在低加载速度(1 mm min(-1))下拉伸至3400%应变。损坏后,可以在60摄氏度下将聚合物热修复20小时,修复效率超过90%。该聚合物良好的机械性能和可修复性能可归因于Fe(III)-三唑配位化合物的独特配位键强度和配位构象。

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