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Amino Functionalization of Reduced Graphene Oxide/Tungsten Disulfide Hybrids and Their Bismaleimide Composites with Enhanced Mechanical Properties

机译:氧化石墨烯氧化物/钨二硫化物杂交种及其双聚烯烃复合材料具有增强的机械性能的氨基官能化

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摘要

A novel graphene-based nanocomposite particles (NH2-rGO/WS2), composed of reduced graphene oxide (rGO) and tungsten disulfide (WS2) grafted with active amino groups (NH2-rGO/WS2), was successfully synthesized by an effective and facile method. NH2-rGO/WS2 nanoparticles were then used to fabricate new bismaleimide (BMI) composites (NH2-rGO/WS2/BMI) via a casting method. The results demonstrated that a suitable amount of NH2-rGO/WS2 nanoparticles significantly improved the mechanical properties of the BMI resin. When the loading of NH2-rGO/WS2 was only 0.6 wt %, the impact and flexural strength of the composites increased by 91.3% and 62.6%, respectively, compared to the neat BMI resin. Rare studies have reported such tremendous enhancements on the mechanical properties of the BMI resin with trace amounts of fillers. This is attributable to the unique layered structure of NH2-rGO/WS2 nanoparticles, fine interfacial adhesion, and uniform dispersion of NH2-rGO/WS2 in the BMI resin. Besides, the thermal gravimetrical analysis (TGA) revealed that the addition of NH2-rGO/WS2 could also improve the stability of the composites.
机译:由有效且容易成功地合成由嫁接有活性氨基(NH2-RGO / WS2)的石墨烯(RGO)和钨硫化物二硫化物(WS2)组成的基于石墨烯的纳米复合材料颗粒(NH2-RGO / WS2)。方法。然后使用NH2-RGO / WS2纳米颗粒通过铸造方法制造新的双聚烯烃(BMI)复合材料(NH2-RGO / WS2 / BMI)。结果表明,合适量的NH 2-RGO / WS2纳米颗粒显着改善了BMI树脂的机械性能。当NH 2-RGO / WS2的负载仅为0.6wt%时,与纯BMI树脂相比,复合材料的冲击和弯曲强度分别增加了91.3%和62.6%。罕见的研究报道了对具有痕量填料的BMI树脂的力学性能进行了这种巨大的增强。这可归因于NH2-RGO / WS2纳米颗粒的独特层状结构,细界面粘附和BMI树脂中NH 2-RGO / WS2的均匀分散。此外,热重量分析(TGA)显示添加NH 2-RGO / WS2还可以提高复合材料的稳定性。

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