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Static and Dynamic Behavior of Polymer/Graphite Oxide Nanocomposites before and after Thermal Reduction

机译:热还原前后聚合物/石墨氧化物纳米复合材料的静态和动态行为

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摘要

Nanocomposites of hyperbranched polymers with graphitic materials are investigated with respect to their structure and thermal properties as well as the dynamics of the polymer probing the effect of the different intercalated or exfoliated structure. Three generations of hyperbranched polyester polyols are mixed with graphite oxide (GO) and the favorable interactions between the polymers and the solid surfaces lead to intercalated structure. The thermal transitions of the confined chains are suppressed, whereas their dynamics show similarities and differences with the dynamics of the neat polymers. The three relaxation processes observed for the neat polymers are observed in the nanohybrids as well, but with different temperature dependencies. Thermal reduction of the graphite oxide in the presence of the polymer to produce reduced graphite oxide (rGO) reveals an increase in the reduction temperature, which is accompanied by decreased thermal stability of the polymer. The de-oxygenation of the graphite oxide leads to the destruction of the intercalated structure and to the dispersion of the rGO layers within the polymeric matrix because of the modification of the interactions between the polymer chains and the surfaces. A significant increase in the conductivity of the resulting nanocomposites, in comparison to both the polymers and the intercalated nanohybrids, indicates the formation of a percolated rGO network.
机译:研究了具有石墨材料的超支化聚合物的纳米复合材料,以及它们的结构和热性能以及探测不同插入或剥离结构的效果的聚合物的动力学。三代超支化聚酯多元醇与石墨氧化物(GO)混合,并且聚合物与固体表面之间的有利相互作用导致插入结构。抑制了限制链的热转变,而它们的动态显示出与整洁聚合物的动态的相似之处和差异。对于整个聚合物观察到的三种弛豫过程也在纳米冬小时观察,但具有不同的温度依赖性。在聚合物存在下,石墨氧化物的热量减少以产生还原石墨氧化物(RGO)显示,还原温度的增加,其伴随着聚合物的热稳定性降低。石墨氧化物的去氧导致嵌入结构的破坏以及由于聚合物链和表面之间的相互作用的改变而在聚合物基质内的rgo层的分散。与聚合物和插入纳米冬次的纳米混合物相比,所得纳米复合材料的导电性的显着增加表明形成渗流的RGO网络。

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