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首页> 外文期刊>Physica status solidi, B. Basic research >Nanocomposites of epoxy resin with graphene nanoplates and exfoliated graphite: Synthesis and electrical properties
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Nanocomposites of epoxy resin with graphene nanoplates and exfoliated graphite: Synthesis and electrical properties

机译:环氧树脂与石墨烯纳米板和剥离石墨的纳米复合材料:合成与电性能

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Nanocomposites are nowadays one of the most promising materials. Among different fillers, e. g. carbon nanotubes and silicon carbide nanowires (NWSiC), already used with epoxy resin matrices, graphene exfoliated graphite (EG) and graphene nanoplates have some characteristics that make them unique for electromagnetic shielding materials. However, there is still an unresolved problem of proper dispersion that will ensure the homogeneity of samples. To overcome this drawback, inorganic fibres were proposed. An amount of 0.25 phr (parts per hundred; filler content presented as wt.% of the whole polymeric matrix) NWSiC, added to the EG 1 phr/epoxy resin sample, efficiently prevents filler agglomeration. NWSiC were obtained in combustion synthesis and EG was produced from intercalated graphite using microwaves. Finally, nanocomposites with EG from self-propagating high-temperature synthesis were also tested. The properties of the samples have been characterized, revealing an observable improvement of pure resin features.
机译:纳米复合材料是当今最有前途的材料之一。在不同的填料中,e。 G。碳纳米管和碳化硅纳米线(NWSiC)已经与环氧树脂基体,石墨烯剥落石墨(EG)和石墨烯纳米板一起使用,具有一些特性,使其成为电磁屏蔽材料的独特之选。但是,仍然存在尚未解决的适当分散问题,该问题将确保样品的均匀性。为了克服该缺点,提出了无机纤维。添加到EG 1 phr /环氧树脂样品中的0.25 phr(百分率;填料含量占整个聚合物基质的重量%)NWSiC可以有效防止填料结块。在燃烧合成中获得NWSiC,并使用微波从插层石墨中产生EG。最后,还测试了自蔓延高温合成的具有EG的纳米复合材料。样品的特性已被表征,揭示了纯树脂特征的可观察到的改善。

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