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The impact of graphene nano-plates on the behavior of novel conducting polyazomethine nanocomposites

机译:石墨烯纳米板对新型导电聚甲亚胺纳米复合材料行为的影响

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The aim of the current work was to synthesize a new series of polyazomethine/graphene nano-plate nanocomposites in the form of PAMs/GNPa–e. Different compositions were fabricated according to the percentage of GNP loading. The composites were formed in situ during the polymerization reaction for the formation of pure PAMs. The corresponding pre-monomer (1), aminothiazole monomer (2) and consequently, new conducting PAMs polymer were synthesized. The structures of these compounds were confirmed by elemental and spectral analyses, including FT-IR, 1H-NMR and 13C-NMR. The pure PAMs and PAMs/GNPa–e nanocomposites were characterized using available characterization techniques. X-ray diffraction (XRD), thermal analyses, conductivity tests and scanning electron microscopy (SEM) were also performed. Furthermore, a comparative study was carried out to demonstrate the role of GNP inclusion into the PAMs polymer matrix in the form of nanocomposites. Intense absorption peaks related to GNPs and pure PAMs were observed in the FT-IR spectra of our new PAMs/GNPa–e nanocomposites, and these peaks represent a good reference for the fabrication of such nanocomposites. The thermal degradation of pure PAMs and the PAMs/GNPa–e nanocomposites occurred in two steps. The degradation steps were dependent upon the nature of the desired nanocomposites, which was mainly related to the decomposition of the pure PAMs content. Moreover, SEM images offered more obvious evidence for the formation of the nanocomposites. In addition, an electrical conductivity test showed a complete change in the conductivity behavior of PAMs upon GNP loading, from a very poor state to semiconductor behavior in the PAMs/GNPa–e nanocomposites.
机译:当前工作的目的是以PAMs / GNP a–e 的形式合成一系列新的聚甲亚胺/石墨烯纳米板纳米复合材料。根据GNP负载量的百分比制备了不同的组合物。该复合物是在聚合反应过程中原位形成的,用于形成纯PAM。合成了相应的前单体(1),氨基噻唑单体(2),从而合成了新的导电PAM​​聚合物。通过FT-IR, 1 H-NMR和 13 的元素和光谱分析证实了这些化合物的结构。小> 13 C-NMR。使用可用的表征技术对纯PAM和PAM / GNP a-e 纳米复合材料进行表征。还进行了X射线衍射(XRD),热分析,电导率测试和扫描电子显微镜(SEM)。此外,进行了一项比较研究,以表明GNP以纳米复合材料的形式包含在PAMs聚合物基质中的作用。在我们的新型PAM / GNP a-e 纳米复合材料的FT-IR光谱中观察到与GNP和纯PAM相关的强烈吸收峰,这些峰为研究提供了很好的参考。这种纳米复合材料的制造。纯PAM和PAMs / GNP a-e 纳米复合材料的热降解过程分为两个步骤。降解步骤取决于所需纳米复合材料的性质,这主要与纯PAM含量的分解有关。而且,SEM图像为纳米复合材料的形成提供了更明显的证据。此外,电导率测试表明,在GNP加载后,PAM的电导行为发生了完全变化,从非常差的状态变为PAM / GNP a–e 纳米复合材料。

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