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Influence of Oxidation Level of Graphene Oxide on the Mechanical Performance and Photo-Oxidation Resistance of a Polyamide 6

机译:石墨烯氧化水平对聚酰胺6的机械性能和光氧化抗性的影响

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摘要

The aim of this work is to study the relationship between the chemical-physical properties of graphene oxide (GO) and the performance of a polyamide 6 (PA6) in terms of mechanical reinforcement and resistance to UV-exposure. For this purpose, two samples of GO possessing different oxidation degrees were added (0.75 wt.%) to PA6 by way of a two-step technique and the materials achieved were carefully analysed from a morphological, chemical-physical, mechanical point of view. Photo-oxidation tests were carried out to assess the performance of this class of nanohybrids after 240 h of UV-exposure. The results reveal that both nanocomposites exhibit enhanced mechanical performance and durability of PA6. However, the most oxidized GO led to a higher increase of mechanical properties and a stronger resistance to UV-exposure. All the analyses confirm that both GO samples are well dispersed and covalently attached to PA6. However, the higher the oxidation level of GO the stronger and the more extended the chemical interphase of the nanocomposite. As regards photochemical stability, both GO samples display UV-shielding capacity but the most oxidized GO also shows radical scavenging activity by virtue of its nanocavities and defects, imparted by prolonged oxidation, which endows PA6 with an outstanding durability even after 240 h of UV-exposure.
机译:这项工作的目的是研究石墨烯(GO)的化学物理性质与聚酰胺6(PA6)的性能之间的关系,以及对UV暴露的抗性的影响。为此目的,通过两步技术(0.75重量%)加入(0.75重量%)对PA6的两种样品。从形态学,化学物理,机械的角度仔细分析所达到的材料。进行了光氧化试验,以评估这种纳米冬小麦的性能在240小时后的紫外线暴露后。结果表明,两种纳米复合材料都表现出增强的机械性能和PA6的耐久性。然而,最氧化的转移导致机械性能的增加和抗紫外线抗性的更强的抗性。所有分析确认,两种样品都分散良好并与PA6共价附加。然而,较强的氧化水平越高,较大的纳米复合材料的化学相互作用越高。关于光化学稳定性,两种样品都显示出紫外线屏蔽能力,但最氧化的去也通过其延长氧化赋予的纳米蜂窝和缺陷来显示激进的清除活性,即使在240小时后赋予PA6具有出色的耐久性。暴露。

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