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A Self-Healing Polymer with Fast Elastic Recovery upon Stretching

机译:拉伸后可快速恢复弹性的自修复聚合物

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摘要

The design of polymers that exhibit both good elasticity and self-healing properties is a highly challenging task. In spite of this, the literature reports highly stretchable self-healing polymers, but most of them exhibit slow elastic recovery behavior, i.e., they can only recover to their original length upon relaxation for a long time after stretching. Herein, a self-healing polymer with a fast elastic recovery property is demonstrated. We used 4-[tris(4-formylphenyl)methyl]benzaldehyde (TFPM) as a tetratopic linker to crosslink a poly(dimethylsiloxane) backbone, and obtained a self-healing polymer with high stretchability and fast elastic recovery upon stretching. The strain at break of the as-prepared polymer is observed at about 1400%. The polymer can immediately recover to its original length after being stretched. The damaged sample can be healed at room temperature with a healing efficiency up to 93% within 1 h. Such a polymer can be used for various applications, such as functioning as substrates or matrixes in soft actuators, electronic skins, biochips, and biosensors with prolonged lifetimes.
机译:同时具有良好弹性和自愈性能的聚合物的设计是一项极富挑战性的任务。尽管如此,文献报道了高度可拉伸的自修复聚合物,但是它们中的大多数表现出缓慢的弹性恢复行为,即,它们在拉伸后长时间松弛后只能恢复到其原始长度。在此,说明了具有快速的弹性回复特性的自修复聚合物。我们使用4- [三(4-甲酰基苯基)甲基]苯甲醛(TFPM)作为四位连接基来交联聚(二甲基硅氧烷)骨架,并获得了具有高拉伸性和拉伸时快速弹性恢复的自修复聚合物。观察到所制备的聚合物的断裂应变为约1400%。聚合物在拉伸后可以立即恢复到其原始长度。受损的样品可以在室温下以1小时内高达93%的治愈率进行修复。这样的聚合物可以用于各种应用,例如用作软致动器,电子皮肤,生物芯片和具有延长寿命的生物传感器中的基质或基质。

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