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p-toluene sulfonic acid doped polyaniline carbon nanotube composites: synthesis via different routes and modified properties

机译:对甲苯磺酸掺杂聚苯胺碳纳米管复合材料:通过不同途径合成和改性性能

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摘要

Composites of polyaniline and carbon nanotube (CNT) were prepared by in-situ chemical polymerization method using various aniline concentrations in the initial polymerization solution with p-toluene sulfonic acid (PTS) as secondary dopant and mechanical mixing of the PANI and CNT using different weight ratios of PANI and CNTs. The structural characterizations of the composites were done by Fourier transform infrared (FTIR) and Ultra violet visible spectroscopy (UV-Visible). Scanning electron microscopy (SEM) was used to characterize the surface morphology of the composites. It was found that the composites prepared by in-situ chemical polymerization had smoother surface morphology in comparison to the composites obtained by mechanical mixing. The capacitive studies reveal that the in-situ composite has synergistic effect and the specific capacitance of the composite calculated from cyclic voltammogram (CV) was 385.1 F/g. Thermal studies indicate that the composites are stable as compared to PANI alone showing that the CNT contributes towards thermal stability in the PANI-CNT composites.
机译:聚苯胺和碳纳米管(CNT)的复合材料通过原位化学聚合方法制备,在初始聚合溶液中以对甲苯磺酸(PTS)为第二掺杂剂使用各种浓度的苯胺,并使用不同的重量将PANI和CNT机械混合。 PANI和CNT的比例复合材料的结构表征是通过傅立叶变换红外(FTIR)和紫外可见光谱(UV-Visible)进行的。扫描电子显微镜(SEM)用于表征复合材料的表面形态。发现与通过机械混合获得的复合物相比,通过原位化学聚合制备的复合物具有更光滑的表面形态。电容性研究表明,原位复合材料具有协同作用,根据循环伏安图(CV)计算得出的复合材料的比电容为385.1 F / g。热学研究表明,与单独的PANI相比,复合材料稳定,表明CNT有助于PANI-CNT复合材料的热稳定性。

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