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首页> 外文期刊>Journal of Materials Science >Non-covalently modified reduced graphene oxide/polyurethane nanocomposites with good mechanical and thermal properties
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Non-covalently modified reduced graphene oxide/polyurethane nanocomposites with good mechanical and thermal properties

机译:具有良好机械和热性能的非共价改性还原氧化石墨烯/聚氨酯纳米复合材料

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Non-covalently modified graphene nanosheets were prepared by reduction graphene oxide with hydrazine hydrate and simultaneous non-covalent functionalization via 1-allyl-methylimidazolium chloride (AmimCl) ionic liquid. Atomic force microscopy revealed that AmimCl ionic liquid modified graphene (IL-G) was well-dispersed in a single exfoliation with a thickness of around 0.96 nm in DMF. Subsequently, the prepared IL-G nanosheets were incorporated into polyurethane (PU) to fabricate IL-G/PU nanocomposites by solution blending. X-ray diffraction disclosed an exfoliated morphology of IL-G nanosheets dispersed in the PU matrix, while the fractured morphology of the IL-G/PU nanocomposites showed that IL-G nanosheets presented a wrinkled morphology when dispersed in the matrix. Both techniques revealed homogeneous dispersion and good compatibility of IL-G nanosheets with PU matrix, indicating the existence of interfacial interactions. At 0.608 wt% loadings of IL-G nanosheets, the tensile strength and storage modulus of the composites were increased by 68.5 and 81.1 %, respectively. High thermal properties were also achieved at a low loading of IL-G nanosheets. An approximately 40 ℃ improvement in temperature of 5 % weight loss and 34 % increase in thermal conductivity were obtained at just 0.608 wt% loading of IL-G nanosheets.
机译:通过用水合肼还原氧化石墨烯并通过1-烯丙基甲基咪唑鎓氯化物(AmimCl)离子液体同时进行非共价官能化来制备非共价改性的石墨烯纳米片。原子力显微镜显示,AmimCl离子液体改性的石墨烯(IL-G)在DMF中以约0.96 nm的厚度均匀分散在一次剥离中。随后,将制备的IL-G纳米片材掺入聚氨酯(PU)中以通过溶液共混制备IL-G / PU纳米复合材料。 X射线衍射揭示了分散在PU基质中的IL-G纳米片的剥落形态,而IL-G / PU纳米复合材料的断裂形态表明,当IL-G纳米片分散在基质中时呈现皱纹形态。两种技术均显示IL-G纳米片与PU基质具有均匀的分散性和良好的相容性,表明存在界面相互作用。 IL-G纳米片的负载量为0.608 wt%时,复合材料的拉伸强度和储能模量分别增加了68.5%和81.1%。在低载量的IL-G纳米片的情况下也实现了高热性能。在仅加载0.608 wt%的IL-G纳米片的情况下,温度降低了约40℃,重量减少了5%,导热率提高了34%。

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