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Toward Homogeneous Nanostructured PolyaniIine/Resin Blends

机译:走向均相的纳米结构聚苯胺/树脂共混物

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The high interest in applications of conducting polymers, especially polyaniline (PANI), makes it important to overcome limitations for effective usage due to poor processability and solubility. One promising approach is to make blends of PANI in polymeric resins. However, in this approach other problems related to the difficulty of achieving a homogeneous PANI dispersion arise. The present article is focused on this general problem, and we discuss how the synthesis method, choice of dopant and solvent as well as interfacial energies influence the dispersibility. For this purpose, different synthesis methods and dopants have been employed to prepare nanostructures of polyaniline. Dynamic light scattering analysis of dispersions of the synthesized particles in several solvents was employed in order to understand how the choice of solvent affects PANI aggregation. Further information on this subject was achieved by scanning electron microscopy studies of PANI powders dried from various solutions. On the basis of these results, acetone was found to be a suitable dispersion medium for PANI, The polymer matrix used to make the blends in this work is a UV-curing solvent-free resin. Therefore, there is no low molecular weight liquid in the system to facilitate the mixing process and promote formation of homogeneous dispersions. Thus, a good compatibility of the components becomes crucial. For this reason, surface tension and contact angle measurements were utilized for characterizing the surface energy of the PANI particles and the polyester acrylate (PEA) resin, and also for calculating the interfacial energy between these two components that revealed good compatibility within the PANI/PEA blend. A novel technique, based on centrifugal sedimentation analysis, was employed in order to determine the PANI particle size in PEA resin, and high dispersion stability of the PANI/PEA blends was suggested by evaluation of the sedimentation data..
机译:导电聚合物,尤其是聚苯胺(PANI)的应用引起了人们的极大兴趣,因此,由于加工性能和溶解性较差,克服有效使用的局限性变得很重要。一种有前途的方法是在聚合物树脂中制备PANI的混合物。然而,在这种方法中,出现了与实现均匀的PANI分散的困难有关的其他问题。本文着眼于这个普遍的问题,我们讨论了合成方法,掺杂剂和溶剂的选择以及界面能如何影响分散性。为此目的,已经采用了不同的合成方法和掺杂剂来制备聚苯胺的纳米结构。为了了解溶剂的选择如何影响PANI聚集,采用了动态光散射法分析合成颗粒在几种溶剂中的分散体。通过扫描电子显微镜研究从各种溶液中干燥的PANI粉末,可以获得有关该主题的更多信息。根据这些结果,发现丙酮是用于PANI的合适分散介质。在这项工作中,用于制备共混物的聚合物基质是无紫外线固化溶剂的树脂。因此,系统中没有低分子量液体来促进混合过程并促进形成均匀分散体。因此,组件的良好兼容性变得至关重要。因此,利用表面张力和接触角测量来表征PANI颗粒和聚酯丙烯酸酯(PEA)树脂的表面能,并计算这两个组分之间的界面能,这些界面能表明PANI / PEA具有良好的相容性混合。为了确定PEA树脂中PANI的粒径,采用了一种基于离心沉降分析的新技术,并通过评估沉降数据表明PANI / PEA共混物具有较高的分散稳定性。

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