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Ternary nanocomposites of reduced graphene oxide, polyaniline and hexaniobate: hierarchical architecture and high polaron formation

机译:石墨烯氧化物,聚苯胺和六烷基酸盐的三元纳米复合物:等级架构和高焦化形成

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摘要

Nanostructured systems, such as nanocomposites, are potential materials for usage in different fields since synergistic effects of their components at the nanoscale domain may improve physical/chemical properties when compared to individual phases. We report here the preparation and characterisation of a new nanocomposite composed of polyaniline (PANI), reduced graphene oxide (rGO) and hexaniobate (hexNb) nanoscrolls. Atomic force microscopy images show an interesting architecture of rGO flakes coated with PANI and decorated by hexNb. Such features are attributed to the high stability of the rGO flakes prepared at room temperature. Detailed characterisation by X-ray photoelectron and Raman spectroscopies indicates an intermediate reduction degree for the rGO component and high doping degree of the PANI chains compared to the neat polymer. The latter feature can be attributed to cooperative effects of PANI chains with rGO flakes and hexNb nanoscrolls, which promote conformational changes of the polymer backbone (secondary doping). Spectroscopic and electrochemistry data indicate a synergetic effect on the ternary nanocomposite, which is attributed to interactions between the components resulting from the morphological aspects. Therefore, the new nanocomposite presents promising properties for development of new materials in the film form on substrates for sensing or corrosion protection for example.
机译:纳米结构(例如纳米复合材料)是在不同领域中使用的潜在材料,因为与个体阶段相比,它们组分在纳米级结构域的协同作用可以改善物理/化学性质。我们在此报告了由聚苯胺(PANI),还原的氧化石墨烯(RGO)和己烷酸(HexNB)纳米杆菌组成的新纳米复合材料的制备和表征。原子力显微镜图像显示了覆盖泛的rgo薄片的有趣体系结构,并由河内装饰。这些特征归因于在室温下制备的Rgo薄片的高稳定性。 X射线光电子和拉曼光谱的详细表征表明,与整齐的聚合物相比,RGO成分的中间还原程度和粉皮链的高掺杂程度。后一种特征可归因于PANI链与RGO薄片和己纳米瘤的合作效果,其促进了聚合物主链的构象变化(二次掺杂)。光谱和电化学数据表示对三元纳米复合材料的协同作用,其归因于由形态学方面产生的组分之间的相互作用。因此,新的纳米复合材料呈现出于例如对衬底上的薄膜形式的新材料的有希望的性质,用于例如感​​测或腐蚀保护。

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