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LPG Sensing Properties of Electrospun In-Situ Polymerized Polyaniline/MWCNT Composite Nanofibers

机译:电纺出原位聚合聚苯胺/ MWCNT复合纳米纤维的LPG感测性能

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In this paper, we report the fabrication of poly(methyl methacrylate) (PMMA) nanofibers by electrospinning technique and used as substrate for coating pure polyaniline (PANI) and PANI/multiwalled carbon nanotubes (MWCNT) separately during chemical oxidative polymerization. The morphology and structure of PANI and PANI/MWCNT nanofibers were investigated by SEM, UV-VIS, FTIR and XRD. SEM shows that the fibrous structure of PMMA with an average fiber diameter 272 nm. UV-Vis, FTIR and XRD analyses confirmed the formation of PANI and its interaction with MWCNT. Electrical responses of the synthesized samples towards LPG were measured at room temperature for various ppm, which fulfill all the characteristics like sensitivity, response, recovery of the sensors. Sensitivity study shows that materials under investigation are found to be highly sensitive for LPG near to room temperature. PANI/MWCNT nanofibers showed rapid and reversible resistance change upon exposure to LPG as compared to that of PANI nanofibers, which may be due to MWCNT wrapped by conducting PANI results in the formation of a charge transfer complex which increases the protonation of the polyaniline and the transition in the electrical resistance was attributed to a change in the localization length of the composite nanofibers.
机译:在本文中,我们通过静态纺丝技术报告聚(甲基丙烯酸甲酯)(PMMA)纳米纤维的制造,并用作涂覆纯聚苯胺(PANI)和PANI /多晶碳纳米管(MWCNT)的基材在化学氧化聚合期间。通过SEM,UV-Vis,FTIR和XRD研究了PANI和PANI / MWCNT纳米纤维的形态和结构。 SEM表明PMMA的纤维结构具有平均纤维直径272nm。 UV-Vis,FTIR和XRD分析证实了PANI的形成及其与MWCNT的相互作用。在室温下测量合成样品对LPG的电响应,用于各种PPM,其满足敏感性,响应,传感器的恢复等所有特征。敏感性研究表明,发现正在研究的材料对室温的LPG高度敏感。与PANI纳米纤维相比,PANI / MWCNT纳米纤维在暴露于LPG时显示出快速和可逆的电阻变化,这可能是由于通过进行PANI包裹的MWCNT导致形成电荷转移络合物,这增加了聚苯胺的质子化和该电荷转移络合物。电阻中的过渡归因于复合纳米纤维的定位长度的变化。

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