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Morphology, structure, and segmental dynamics in polyazomethine/hybrid carbon nanofillers composites

机译:聚氮杂物/杂交碳纳米填料复合材料中的形态,结构和分段动力学

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The polyazomethine/hybrid carbon nanofillers composites were fabricated. The nanofilles were comprised of thermally reduced graphene oxide (rGO) and multi-walled carbon nanotubes (MWCNTs) varying in rGO:MWCNTs ratio; the total nanofillers loading was 1 wt%. The scanning electron miscroscopy images revealed uniform distribution of the hybrid nanofillers and formation of 3D networks between rGO and MWCNTs. Molecular dynamics of the polymer chains in these nanocomposites was investigated with broadband dielectric spectroscopy. The polymer fragility, the dielectric glass transition temperature, and the dielectric relaxation strength of the nanocomposites were evaluated and analyzed depending on the rGO:MWCNTs ratio. The thermal glass transition temperature and the thermal relaxation strength evaluated from the differential scanning calorimetry data were shown to behave in other manner. This behavior was interpreted in terms of a fraction of polymer being immobilized in an interfacial layer around the nanoparticles.
机译:制造聚氮磺酸/杂交碳纳米填料复合材料。纳米甲夹由在RGO:MWCNTs比例中的热还原的石墨烯氧化物(RGO)和多壁碳纳米管(MWCNT)不同;总纳米填料负载量为1wt%。扫描电子误诊图像揭示了混合纳米填充物的均匀分布和RGO与MWCNT之间的3D网络形成。用宽带介电光谱研究这些纳米复合材料中的聚合物链的分子动力学。评估聚合物碎片,介电玻璃化转变温度和纳米复合材料的介电弛豫强度,并根据RGO:MWCNTS比率进行分析。从差示扫描量热法评价的热玻璃化转变温度和热弛豫强度显示出以其他方式行事。就纳米颗粒周围的界面层中固定在界面层中的聚合物的一部分,这种行为被解释。

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