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Dielectric Polarization and Electrorheological Response of Poly(ethylaniline)-Coated Reduced Graphene Oxide Nanoflakes with Different Reduction Degrees

机译:聚(乙基苯胺)涂覆的氧化石墨烯氧化物纳米薄膜具有不同还原度的介电偏振和电流响应

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摘要

We prepared poly(ethylaniline)-coated graphene oxide nanoflakes and then treated them with different concentrations of hydrazine solution to form dielectric composite nanoflakes having different reduction degrees of reduced graphene oxide core and insulating polyethylaniline shell (PEANI/rGO). The morphology of PEANI/rGO was observed by scanning electron microscopy, while the chemical structure was confirmed by Fourier transform infrared spectroscopy and X-ray photoelectron spectrometer. The influence of reduction degrees on the conductivity, dielectric polarization and electrorheological effect of PEANI/rGO in suspensions was investigated by dielectric spectroscopy and rheological test under electric fields. It shows that the PEANI/rGO has two interfacial polarization processes respectively due to rGO core and PEANI shell. As the number of hydrazine increases, the conductivity and polarization rate of rGO core increase. As a result, the difference between the polarization rate of rGO core and that of the PEANI shell gradually becomes large. This increased difference does not significantly decrease the yield stress but causes the flow instability of PEANI/GO suspensions under the simultaneous action of electric and shear fields.
机译:我们制备了聚(乙基苯胺)涂料的石墨烯氧化物纳米饼,然后用不同浓度的肼溶液处理它们以形成具有不同氧化石墨烯氧化物核和绝缘聚乙烯苯胺壳(PEANI / RGO)不同还原度的介电复合纳米薄膜。通过扫描电子显微镜观察PAINI / RGO的形态,而傅里叶变换红外光谱和X射线光电子光谱仪证实了化学结构。通过电场介电光谱和流变检测研究了减少对悬浮液中的电导率,PEANI / RGO的电导率,介电学偏振和电流效应的影响。它表明,由于RGO核心和PISHI壳,PEANI / RGO分别具有两个界面极化过程。随着肼的数量增加,RGO核心的电导率和偏振率增加。结果,RGO芯的偏振率与PIANI壳的偏振率之间的差异逐渐变大。这种增加的差异不会显着降低屈服应力,但是在电动和剪切场的同时作用下导致PIANI /悬浮液的流动不稳定。

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