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Reconfiguration and shape memory triggered by heat and light of carbon nanotube-polyurethane vitrimer composites

机译:由碳纳米管 - 聚氨酯玻璃化合物复合材料的热和光触发的重新配置和形状存储器

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摘要

Thermoset shape-memory polymers (SMPs) are widely applied because of their superiority in maintaining permanent shapes. However, the inferiority of this material is also conspicuous, namely the loss of reprocessing ability owing to the chemically crosslinked structure. Fortunately, a new class of SMPs, known as "vitrimers," was discovered, which can be reshaped or reprocessed via topological rearrangement due to the existence of dynamic covalent bonds. Thus, this new thermoset SMP could become a novel solution. In this paper, carbon nanotube-polyurethane vitrimer (CNT-PUV) composites have been prepared, which possess the capability of thermally induced shape memory based on entropy changes and thermal reconfiguration based on transcarbamoylation reactions of carbamate bonds. In addition, the introduction of CNTs endows them with properties of near-infrared (NIR) triggered shape memory and reconfiguration due to the photothermal conversion effect of CNTs. Besides, due to the character of the NIR laser, step-by-step shape recovery of CNT-PUVs is realized from predefined temporary shapes to a permanent shape. (C) 2017 Wiley Periodicals, Inc.
机译:热固性形状记忆聚合物(SMPS)被广泛应用,因为它们在保持永久形状方面的优越性。然而,这种材料的自卑感也是显眼的,即由于化学交联结构而失去的再处理能力。幸运的是,发现了一种新的SMP,被称为“virimers”,被发现,由于存在动态共价键,可以通过拓扑重排来重塑或重新加工。因此,这种新的热固性SMP可能成为一种新的解决方案。在本文中,已经制备了碳纳米管 - 聚氨酯玻璃体(CNT-PUV)复合材料,其具有基于基于氨基甲酰胺键的经碳酸盐反应的熵变化和热重新固化的热诱导形状记忆的能力。此外,CNT的引入赋予它们具有近红外(NIR)触发形状存储器的性质,并且由于CNT的光热转换效应而重新配置。此外,由于NIR激光器的特征,CNT-PUV的逐步形状从预定义的临时形状实现到永久形状。 (c)2017 Wiley期刊,Inc。

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