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Fabrication of Polypyrrole-Coated Carbon Nanotubes Using Oxidant-Surfactant Nanocrystals for Supercapacitor Electrodes with High Mass Loading and Enhanced Performance

机译:使用氧化剂表面活性剂纳米晶体制备聚吡咯涂层碳纳米管,以用于具有高质量负载和增强性能的超级电容器电极

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A conceptually new approach to the fabrication of polypyrrole (PPy)-coated multiwalled carbon nanotubes (MWCNT) for application in electrodes of electrochemical supercapacitors (ES) is proposed. Cetrimonium persulfate (CTA)2S2O8 in the form of nanocrystals is used as an oxidant for the chemical polymerization of PPy. Ponceau S (PS) dye is investigated as a new anionic dopant. Testing results show that PS allows reduced PPy particle size and improved electrochemical performance, whereas (CTA)2S2O8 nanocrystals promote the formation of PPy nanofibers. We demonstrate for the first time that MWCNT can be efficiently dispersed using (CTA)2S2O8 nanocrystals. The analysis of the dispersion mechanism indicates that (CTA)2S2O8 dissociation is catalyzed by MWCNT. This new finding opens a new and promising strategy in MWCNT dispersion for colloidal processing of nanomaterials and electrophoretic nanotechnology. Uniformly coated MWCNT are obtained using (CTA)2S2O8 as a dispersant for MWCNT and oxidant for PPy polymerization and utilizing advantages of PS as an efficient dopant and nanostracture controlling agent. The analysis of the testing results provides an insight into the influence of PS molecular structure on PPy nanostructure and electrochemical properties. The PPy-coated MWCNT show superior electrochemical performance compared to PPy nanoparticles. The proof-of-principle is demonstrated by the fabrication of ES electrodes with excellent electrochemical performance at high active material loadings, good capacitance retention at high charge-discharge rates, and excellent cycling stability.
机译:提出了一种概念上新颖的制备聚吡咯(PPy)涂层的多壁碳纳米管(MWCNT)的方法,用于电化学超级电容器(ES)的电极。纳米晶体形式的过硫酸铈(CTA)2S2O8用作PPy化学聚合的氧化剂。研究了丽春红S(PS)染料作为新型阴离子掺杂剂。测试结果表明,PS可以减小PPy的粒径并改善电化学性能,而(CTA)2S2O8纳米晶体可以促进PPy纳米纤维的形成。我们首次证明了使用(CTA)2S2O8纳米晶体可以有效分散MWCNT。分散机理的分析表明,(CTA)2S2O8的解离是由MWCNT催化的。这一新发现为用于纳米材料的胶体加工和电泳纳米技术的MWCNT分散开辟了一种新的且有希望的策略。使用(CTA)2S2O8作为MWCNT的分散剂和PPy聚合的氧化剂,并利用PS的优势作为有效的掺杂剂和纳米结构控制剂,可以获得均匀涂覆的MWCNT。测试结果的分析提供了对PS分子结构对PPy纳米结构和电化学性能的影响的洞察力。与PPy纳米粒子相比,PPy包覆的MWCNT显示出优异的电化学性能。原理证明是通过制造ES电极证明的,该电极在高活性材料负载下具有出色的电化学性能,在高充放电速率下具有良好的电容保持性,并具有出色的循环稳定性。

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