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Self-Healing Polymer Nanocomposite Materials by Joule Effect

机译:通过焦耳效应自愈高分子纳米复合材料

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摘要

Nowadays, the self-healing approach in materials science mainly relies on functionalized polymers used as matrices in nanocomposites. Through different physicochemical pathways and stimuli, these materials can undergo self-repairing mechanisms that represent a great advantage to prolonging materials service-life, thus avoiding early disposal. Particularly, the use of the Joule effect as an external stimulus for self-healing in conductive nanocomposites is under-reported in the literature. However, it is of particular importance because it incorporates nanofillers with tunable features thus producing multifunctional materials. The aim of this review is the comprehensive analysis of conductive polymer nanocomposites presenting reversible dynamic bonds and their energetical activation to perform self-healing through the Joule effect.
机译:如今,材料科学中的自我愈合方法主要依赖于纳米复合材料中用作矩阵的官能化聚合物。通过不同的物理化学途径和刺激,这些材料可以经历自修复机制,这代表了延长材料使用寿命的很大优势,从而避免了早期处置。特别是,在文献中,据泄露了作为导电纳米复合材料中的自愈合的外部刺激的焦耳效应。然而,它特别重要,因为它包括具有可调谐特征的纳米填充物,从而产生多功能材料。本综述的目的是呈现导电聚合物纳米复合材料的综合分析,呈现可逆动态键及其能量激活,通过焦耳效应进行自愈。

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