首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Fabrication of two-dimensional hybrid sheets by decorating insulating PANI on reduced graphene oxide for polymer nanocomposites with low dielectric loss and high dielectric constant
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Fabrication of two-dimensional hybrid sheets by decorating insulating PANI on reduced graphene oxide for polymer nanocomposites with low dielectric loss and high dielectric constant

机译:通过在具有低介电损耗和高介电常数的聚合物纳米复合材料上用还原氧化石墨烯装饰绝缘PANI来制造二维混合片材

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摘要

Novel polyaniline decorated reduced graphene oxide (rPANI@rGO) two-dimensional (2D) hybrids sheets were successfully prepared by in situ polymerization of aniline on graphene oxide (GO) sheets and successive reduction by hydrazine. PANI is heavily reduced, thus it is electrically insulating. The hybrid sheets were used as a novel filler for high performance poly(methyl methacrylate) (PMMA) nanocomposites. Our results show that, when compared with the PMMA/rGO composites, the PMMA/rPANI@rGO nanocomposites not only show a high dielectric constant but also have low dielectric loss. For example, at 1000 Hz, a dielectric constant of 40 and a dielectric loss of 0.12 were observed in the PMMA/rPANI@rGO nanocomposite with rGO/PMMA volume ratio of 6%, whereas the dielectric constant and dielectric loss of PMMA/rGO composite with rGO/PMMA volume ratio of 6% are about 20 and 1250, respectively. More importantly, the dielectric properties of PMMA/ rPANI@rGO nanocomposites can be tuned by controlling the addition of the hybrid sheets. The improved dielectric properties in PMMA/rPANI@rGO nanocomposites should originate from the isolation effect of rPANI on the rGO in PMMA matrix, which not only improves the dispersion of rGO but also hinders the direct electrical contact between rGO. This research sets up a novel route to polymer composites with high dielectric constants and low dielectric loss, and also expands the application space of graphene-based fillers.
机译:通过将苯胺在氧化石墨烯(GO)片上原位聚合并通过肼连续还原,成功制备了新型聚苯胺修饰的还原氧化石墨烯(rPANI @ rGO)二维(2D)杂化片。 PANI大量减少,因此是电绝缘的。杂化片用作高性能聚甲基丙烯酸甲酯(PMMA)纳米复合材料的新型填料。我们的结果表明,与PMMA / rGO复合材料相比,PMMA / rPANI @ rGO纳米复合材料不仅显示出高介电常数,而且具有低介电损耗。例如,在rGO / PMMA体积比为6%的PMMA / rPANI @ rGO纳米复合材料中,在1000 Hz处观察到介电常数为40,介电损耗为0.12,而PMMA / rGO复合材料的介电常数和介电损耗rGO / PMMA体积比为6%时,分别约为20和1250。更重要的是,可以通过控制杂化片的添加来调整PMMA / rPANI @ rGO纳米复合材料的介电性能。 PMMA / rPANI @ rGO纳米复合材料中介电性能的改善应归因于rPANI对PMMA基质中rGO的隔离作用,这不仅改善了rGO的分散性,而且阻碍了rGO之间的直接电接触。这项研究为高介电常数和低介电损耗的聚合物复合材料建立了一条新的途径,并扩大了石墨烯基填料的应用空间。

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