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Synthesis of self-assembling carbon nanotube-polyaniline nanocomposite on a flexible graphene-coated substrate for electrochemical electrode applications

机译:在柔性石墨烯涂层基底上自组装碳纳米管-聚苯胺纳米复合材料的合成用于电化学电极应用

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摘要

Multi-wall carbon nanotube/polyaniline (CNT/PANI) nanocomposite thin films for electrochemical electrode applications are synthesized on flexible graphene-coated indium-tin-oxide (ITO) substrates by using a drop-casting technique. Graphene serves as an adhesion layer between the CNT/PANI nanocomposite film and the flexible ITO substrate. A nanoscale vermicular morphology of PANI films containing well-dispersed CNTs is formed on the surface of graphene. The electrochemical characteristics of the nanocomposite films are investigated in a 0.5-M LiClO4 + PC electrolyte. The electrical conduction of the CNT/PANI/graphene/ITO film is considerably superior to that of a PANI/ITO film. The cyclic voltammogram measurements indicate that the specific capacitance of the CNT/PANI film is similar to 134 F/g which is similar to 11% higher than that (similar to 120 F/g) of the pure PANI film. Most importantly, the nominal capacitance loss of the PANI/CNT film (similar to 1.2%) is significantly improved relative to that of the pure PANI film (similar to 18.1%) after 100 charge-discharge cycles. We attribute the considerably improved capacity retention of the flexible CNT/PANI electrode to the graphene adhesion layer.
机译:通过使用滴铸技术在柔性石墨烯涂层的氧化铟锡(ITO)衬底上合成了用于电化学电极的多壁碳纳米管/聚苯胺(CNT / PANI)纳米复合薄膜。石墨烯用作CNT / PANI纳米复合材料薄膜和柔性ITO基材之间的粘合层。包含良好分散的CNT的PANI膜的纳米蠕变形态在石墨烯表面形成。在0.5 M LiClO4 + PC电解质中研究了纳米复合膜的电化学特性。 CNT / PANI /石墨烯/ ITO膜的导电性明显优于PANI / ITO膜。循环伏安图测量表明,CNT / PANI膜的比电容类似于134 F / g,比纯PANI膜的比电容(类似于120 F / g)高11%。最重要的是,经过100次充放电循环后,PANI / CNT膜的标称电容损耗(约1.2%)相对于纯PANI膜的标称电容损耗(约18.1%)得到了显着改善。我们将柔性CNT / PANI电极的容量保持率显着提高归因于石墨烯粘附层。

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