首页> 外文会议>International Conference of the Polymer Processing Society >Inducing Conductivity in Immiscible PS/PP Blends by a Percolated Polyaniline/PA Filler Selectively Localised by Specific Interactions
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Inducing Conductivity in Immiscible PS/PP Blends by a Percolated Polyaniline/PA Filler Selectively Localised by Specific Interactions

机译:通过特定相互作用选择性地局限地诱导不混溶的PS / PP混合物中的电导率

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We describe an approach to develop conducting immiscible blends of polystyrene (PS) and polypropylene (PP) with a percolated polyaniline/polyamide (PANI/PA) filler in the presence of a SEBS-g-MA compatibilizer. The underlying principle of the work is the ability of the compatibilizer to concurrently stabilize the bi-phasic morphology to develop co-continuous blends and to improve the dispersion of the filler by specific interactions. From the latter perspective, we have chosen a percolated composite of PANI in PA as the filler and prepared its master batches with the compatibilizer expecting that specific interactions between the amino end groups of PA and the MA anhydride groups in SEBS-g-MA would result in a better dispersion of PANI. The effect of master batch preparation method using either melt mixing or solution casting on the conductivity was studied, and the latter technique was found to be superior. As a result, the concomitant effect of morphology stabilization with improved PANI dispersion led to an improved connectivity of PANI in the phase of the blend where it selectively localizes (PS) for 40/60 PS/PP blends. To further improve the connectivity of PANI, we studied the effect of different sequence additions of the solution casted master batch to the blend components. Melt mixing the solution casted master batch with PS followed by PP resulted in double percolated PANI selectively localized in the continuous PS phase owing to their specific interaction in 50/50 PS/PP blend. This resulted in an increase of the dc conductivity by 6 decades in comparison to the neat blend, already at low PANI concentrations (6 wt%). The connectivity of the blend was affirmed by the power law behavior of the viscoelastic response, more in particular the storage modulus G', of the percolated blends. Furthermore, the effect of the compatibilized blend morphology on the dc conductivity and viscoelastic response was investigated by varying the blend composition. In summary, the
机译:我们描述了一种在SEBS-G-MA增容剂存在下用渗透聚苯胺/聚酰胺(PANI / PA)填料进行聚苯乙烯(PS)和聚丙烯(PP)的不混溶共混物的方法。该工作的潜在原则是增容剂同时稳定双相形态的能力,以产生共同的共混物,并通过特异性相互作用改善填料的分散。从后面的角度来看,我们选择了PA作为填料的PANI的渗透复合材料,并用增量剂制备其母料,期望PA和SEBS-G-MA中的MA酐基团之间的氨基端基团之间的特异性相互作用会产生结果在帕尼的更好分散。研究了使用熔融混合或溶液对电导率进行熔融混合或溶液的母体分批制备方法的影响,并发现后一种技术优于优异。结果,通过改进的PANI分散体的形态稳定化的伴随效应导致了在混合物的相位的PANI的改进的连接性,其中选择性地定位(PS)40/60 ps / pp混合物。为了进一步提高PANI的连通性,我们研究了将溶液铸造母料的不同序列添加到共混组分的效果。熔融将溶液浇铸瓶料与Ps的料批次混合,然后是PP导致在连续PS相中选择性地局部地定位的PP,由于其在50/50ps / pp混合物中的特定相互作用。与纯净的共混物相比,这使得直流电导率增加了6分钟,已经处于低PANI浓度(6wt%)。混合物的连接被粘弹性响应的功率法行为,更具体地是渗透混合物的储存模量G'。此外,通过改变共混物组合物研究了相容化混合物形态对DC电导率和粘弹性响应的影响。总之,

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