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Effect of graphene content on the restoration of mechanical, electrical and thermal functionalities of a self-healing natural rubber

机译:石墨烯含量对自愈自然橡胶机械,电气和热函数恢复的影响

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In the present work we show the effect of graphene loading on the restoration of the mechanical properties and thermal and electrical conductivity of a self-healing natural rubber nanocomposite. The graphene loading led to a minimal enhancement of mechanical properties and yielded a modest increase in thermal and electrical conduction. The polymer nanocomposites were macroscopically damaged (cut) and thermally healed for 7 h in a healing cell. Different healing trends as function of the graphene content were found for each of the functionalities: (i) thermal conductivity was fully restored independently of the graphene filler loading; (ii) electrical conductivity was only restored to a high degree above the percolation threshold; and (iii) tensile strength restoration increased more or less linearly with graphene content but was never complete. A dedicated molecular dynamics analysis by dielectric spectroscopy of the pristine and healed samples highlighted the role of graphene-polymer interactions at the healed interphase on the overall restoration of the different functionalities. Based on these results it is suggested that the dependence of the various healing efficiencies with graphene content is due to a combination of the graphene induced lower crosslinking density, as well as the presence of strong polymer-graphene interactions at the healed interphase.
机译:在本工作中,我们展示了石墨烯负荷对自愈合天然橡胶纳米复合材料的机械性能和热导电性和导电性的恢复的影响。石墨烯装载导致机械性能的最小增强,并产生温度和导电的适度增加。聚合物纳米复合材料宏观损坏(切割),并在愈合细胞中热愈合7小时。对于每个功能,发现各种愈合趋势作为石墨烯含量的功能:(i)完全由石墨烯填料负荷全部恢复导热率; (ii)电导率仅恢复到高于渗透阈值的高度; (iii)拉伸强度恢复或多或少地用石墨烯含量增加,但从未完成。通过原始和愈合样品的介电光谱进行专用的分子动力学分析,突出了石墨烯 - 聚合物相互作用在愈合的间间相互作用的作用对不同功能的总恢复。基于这些结果,建议各种愈合效率具有石墨烯含量的依赖性是由于石墨烯诱导的交联密度的组合,以及在愈合的间间处存在强的聚合物 - 石墨烯相互作用。

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