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Novel conductive epoxy composites composed of 2-D chemically reduced graphene and 1-D silver nanowire hybrid fillers

机译:由二维化学还原石墨烯和一维银纳米线杂化填料组成的新型导电环氧复合材料

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摘要

In this study, 1-D Ag nanowires (NWs), 2-D chemically reduced graphene (CRG), and hybrid CRG-Ag NW fillers were investigated for use as conductive epoxy composites. By combining the 2-D CRG with 1-D Ag NWs, the percolation limit of the Ag NWs decreased from 30 wt% to 10 wt% and the electrical conductivity was dramatically enhanced because of the decreased tunneling resistance between the Ag NWs due to the thin 2-D conductive CRGs. Their thermal and mechanical properties were also improved due to the chemical crosslinking effects between CRGs and the hardener in the epoxy matrix as well as the physical crosslinking effects between nano-structures and polymer chains. The break strength of the CRG/Ag-NW/epoxy composite was 50% higher than that of the pure epoxy resin.
机译:在这项研究中,研究了1-D Ag纳米线(NWs),2-D化学还原石墨烯(CRG)和混合CRG-Ag NW填料用作导电环氧复合材料。通过将2-D CRG与1-D Ag NW结合使用,Ag NW的渗透极限从30 wt%降低到10 wt%,并且由于Ag NW之间的隧穿电阻降低,电导率显着提高。薄型二维导电CRG。由于CRG和环氧基质中的固化剂之间的化学交联作用以及纳米结构和聚合物链之间的物理交联作用,它们的热和机械性能也得到了改善。 CRG / Ag-NW /环氧树脂复合材料的断裂强度比纯环氧树脂的断裂强度高50%。

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