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New polyaniline/polypyrrole/ polythiophene and functionalized multiwalled carbon nanotube-based nanocomposites: Layer-by-layer in situ polymerization

机译:新型聚苯胺/聚吡咯/聚噻吩和功能化的多壁碳纳米管基纳米复合材料:逐层原位聚合

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摘要

In this endeavor, a new type of nanocomposites has been developed from conducting organic polymers (layer-by-layer in situ polymerization of various monomers) and functionalized multiwalled carbon nanotubes (MWCNTs). Initially, functiona-lization of MWCNTs was achieved by sulfuric acid (H2SO4):nitric acid (HNO3) and HNO3:hydrogen peroxide treatment. A comparative study regarding the synthetic, morphological, and electrical profiles of raw MWCNTs (R-MWCNTs), pure-MWCNTs (P-MWCNTs), functionalized MWCNTs (F-MWCNTs), and polyaniline/poIypyrrole/polythiophene-F-MWCNTs (PANI/PPy/PTh/F-MWCNTs) nanocomposites was successfully carried out. Introduction of functional groups on the surface of MWCNTs was confirmed by Fourier transform infrared spectra. Energy dispersive x-ray spectroscopy and Rutherford back scattering were employed for the elemental analyses. Morphology of the obtained hybrid material was studied via scanning electron microscopy and their thermal stability was investigated using thermogravimetric analysis. The dielectric constant and electrical conductivity were also measured. Result exploration revealed that F-MWCNTs were well functionalized ensuing interfacial entrapment between the carbon nanotubes and the matrix. In addition, the layer-by-layer deposition of PPy/PANI/PTh polymers enhanced the electrical conductivity of material relative to the neat ones. Besides, the improved thermal stability of composite was acquired when compared with the homopolymers.
机译:在这一努力中,已经从传导有机聚合物(各种单体的逐层原位聚合)和功能化的多壁碳纳米管(MWCNT)开发了一种新型的纳米复合材料。最初,MWCNTs的功能化是通过硫酸(H2SO4):硝酸(HNO3)和HNO3:过氧化氢处理实现的。关于原始MWCNT(R-MWCNT),纯MWCNT(P-MWCNT),功能化MWCNT(F-MWCNT)和聚苯胺/聚吡咯/聚噻吩-F-MWCNT(PANI)的合成,形态和电学特性的比较研究/ PPy / PTh / F-MWCNTs)纳米复合材料已成功进行。通过傅立叶变换红外光谱证实了在MWCNT表面上引入官能团。能量色散x射线光谱法和卢瑟福反散射法用于元素分析。通过扫描电子显微镜研究获得的杂化材料的形态,并使用热重分析研究其热稳定性。还测量了介电常数和电导率。结果探索表明,F-MWCNTs具有良好的功能性,从而确保了碳纳米管与基质之间的界面截留。另外,PPy / PANI / PTh聚合物的逐层沉积相对于纯净的聚合物提高了材料的电导率。此外,与均聚物相比,复合材料具有更高的热稳定性。

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