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Synthesis and electrorheological characteristics of polyaniline/organoclay nanoparticles via Pickering emulsion polymerization

机译:Pickering乳液聚合法合成聚苯胺/有机粘土纳米粒子及其电流变特性

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摘要

Conducting polymer/inorganic composite particles have been regarded as a potential candidate material for electrorheological (ER) fluids when dispersed in non-conducting oils due to their synergistic physical properties such as enhanced thermal stability and high dielectric properties. In this study, we fabricated polyaniline (PANI)/clay nanoparticles with unique core-shell structure via Pickering emulsion in the phase of toluene by adopting exfoliated clay as a stabilizer. Successfully synthesized PANI nanospheres which were initialized by oil-soluble benzoyl peroxide possess a polydispersed size distribution of particles ranging from 200 nm to 1 μm. Surface morphology was revealed by SEM images in which some clay sheets were found to wrap the PANI nanoparticles compactly. TEM images explicitly confirm the position of exfoliated clay layers around the nanospheres. In addition, some nano-scaled particles showed an irregular shape because clay plates are difficult to bend while wrapping the very tiny PANI nanoparticles, so the x-ray diffraction (XRD) pattern did not indicate any obvious sharp peak, demonstrating the nearly completely exfoliated clay layers. Besides these, thermal gravimetric analysis (TGA) data also gave additional information on thermal stability and composition. Finally, the ER fluid was prepared by dispersing PANI/clay nanoparticles in silicone oil and the ER performance was investigated via a rotational rheometer under an applied electric field.
机译:当导电聚合物/无机复合颗粒分散在非导电油中时,由于它们的协同物理特性(例如增强的热稳定性和高介电特性),它们被认为是电流变(ER)流体的潜在候选材料。在这项研究中,我们采用剥离性粘土作为稳定剂,通过在甲苯相中的Pickering乳液制备了具有独特核壳结构的聚苯胺(PANI)/粘土纳米颗粒。由油溶性过氧化苯甲酰引发的成功合成的PANI纳米球具有200 nm至1μm的多分散粒径分布。通过SEM图像揭示了表面形态,其中发现一些粘土片紧密地包裹了PANI纳米颗粒。 TEM图像明确证实了纳米球周围剥落的粘土层的位置。另外,一些纳米级颗粒表现出不规则形状,因为在包裹非常小的PANI纳米颗粒时,粘土板难以弯曲,因此X射线衍射(XRD)图案没有显示任何明显的尖峰,表明几乎完全剥落。粘土层。除此之外,热重分析(TGA)数据还提供了有关热稳定性和成分的其他信息。最后,通过将PANI /粘土纳米颗粒分散在硅油中制备ER流体,并通过旋转流变仪在外加电场下研究ER性能。

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