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Conditional repair by locally switching the thermal healing capability of dynamic covalent polymers with light

机译:通过局部切换动态共价聚合物的热修复能力进行条件修复

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摘要

Healable materials could play an important role in reducing the environmental footprint of our modern technological society through extending the life cycles of consumer products and constructions. However, as most healing processes are carried out by heat alone, the ability to heal damage generally kills the parent material's thermal and mechanical properties. Here we present a dynamic covalent polymer network whose thermal healing ability can be switched ‘on' and ‘off' on demand by light, thereby providing local control over repair while retaining the advantageous macroscopic properties of static polymer networks. We employ a photoswitchable furan-based crosslinker, which reacts with short and mobile maleimide-substituted poly(lauryl methacrylate) chains forming strong covalent bonds while simultaneously allowing the reversible, spatiotemporally resolved control over thermally induced de- and re-crosslinking. We reason that our system can be adapted to more complex materials and has the potential to impact applications in responsive coatings, photolithography and microfabrication.
机译:通过延长消费产品和建筑的寿命周期,可修复材料在减少现代技术社会的环境足迹方面可以发挥重要作用。但是,由于大多数愈合过程都是通过加热来完成的,因此修复损伤的能力通常会破坏母体材料的热和机械性能。在这里,我们介绍了一种动态共价聚合物网络,其热修复能力可以根据需要通过光来“打开”和“关闭”,从而提供对修复的局部控制,同时保留了静态聚合物网络的有利宏观性能。我们使用基于光开关的呋喃基交联剂,该交联剂可与短而可移动的马来酰亚胺取代的聚甲基丙烯酸月桂酯链反应,形成牢固的共价键,同时允许对热诱导的去交联和再交联进行可逆的时空解析控制。我们认为我们的系统可以适用于更复杂的材料,并且有可能影响响应性涂层,光刻和微细加工中的应用。

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