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Electroactive Polymer Based Conducting, Magnetic, and Luminescent Triple Composites

机译:基于电活性聚合物的导电,磁性和发光三重复合材料

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摘要

The latest our results on triple polymer composites based on graphene nanoplatelets (GNP) covered by copper nanoparticles, iron oxide nanoparticles, and CdSe two-dimensional and spherical nanoparticles are presented and analyzed. It was found that GNP covered by copper nanoparticles results in higher conductivity and film stability increase in PEDOT:PSS than pure GNP. It was revealed that in magnetic field, composites based on GNP with iron oxide nanoparticles have metallic conductivity and form thin films with higher surface while thin films formed without magnetic field are dielectrics and have less surface. Luminescent composite based on CdSe nanoplatelets has been obtained. Two maxima in the luminescence spectra of CdSe nanoplatelets have been found and explained with a model based on efficient absorption of photons between neighbor nanoplatelets. Luminescence of active particles was different in different places of the sample and strongly depends on the graphene type. Stronger luminescence is observed in graphene with less amount of defects.
机译:基于由铜纳米颗粒,铁氧化物纳米颗粒,和CdSe二维和球形纳米颗粒所覆盖的石墨烯纳米薄片(GNP)三重聚合物复合材料的最新我们的结果被呈现和分析。据发现,GNP覆盖的铜纳米颗粒的结果在PEDOT更高的导电性和膜稳定性的增加:PSS比纯GNP。据透露,在磁场,复合材料基于GNP与铁氧化物纳米颗粒具有金属导电性,并形成薄膜具有较高的表面,而没有磁场形成的薄膜是电介质和具有更小的表面。已经获得基于纳米片的CdSe发光复合。两个最大值在的CdSe纳米片的发光光谱已被发现并基于邻居纳米片之间的光子的有效吸收的模型进行说明。活性颗粒的发光是在样品的不同的地方不同,并且强烈依赖于石墨烯的类型。强发光,在石墨烯观察到的缺陷量少。

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