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High-performance Supercapacitor cells with Activated Carbon/MWNT nanocomposite electrodes

机译:具有活性炭/ MWNT纳米复合电极的高性能超级电容器细胞

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The purpose of this work was to investigate and improve the performance of supercapacitor cells with carbon-based nanocomposite electrodes. The electrode structure comprised activated carbon (AC), four types of multi-wall nanotubes (MWNTs) and two alternative polymer binders, Polyvinyl alcohol (PVA) or Polyvinylidene fluoride (PVDF). Electrode fabrication involved various stages of mixing and dispersion of the AC powder and carbon nanotubes, rolling and coating of the AC/MWNT/binder paste on an aluminium substrate which also served as current collector. The organic electrolyte utilised was 1M tetraethylammonium tetrafluoroborate (TEABF4) fully dissolved in propylene carbonate (PC). All devices were of the electrochemical double layer capacitor (EDLC) type, incorporating four layers of tissue paper as separator material. The surface topography of the so fabricated electrodes was investigated with scanning electrode microscopy (SEM). Overall cell performance was evaluated with a multi-channel potentiostat/galvanostat/impedance analyser. Each supercapacitor cell was subjected to Cyclic Voltammetry (CV) at various scan rates from 0.01 V/s to 1 V/s, Charge-Discharge at a fixed current steps (2 mA) and Electrochemical Impedance Spectroscopy (EIS) with frequency range from 10 mHz to 1 MHz. It was established that an AC-based supercapacitor with 0.15%w/w MWNT content and 30 μm roll-coated, nanocomposite electrodes provided superior energy and power and energy densities while the cells was immersed in the electrolyte; well above those generated by the AC-based EDLC cells.
机译:这项工作的目的是探讨和提高超级电容器单元与基于碳的纳米复合电极的性能。电极结构包括活性炭(AC),四种类型的多壁纳米管的(多壁碳纳米管)和两个可替代的聚合物粘合剂,聚乙烯醇(PVA)或聚偏氟乙烯(PVDF)。电极制造涉及混合和AC粉末和碳纳米管的分散性,滚动和AC / MWNT的涂层/粘合剂,其也作为集电体的铝基材上粘贴的不同阶段。所用的有机电解质是1M四氟硼酸四乙铵(TEABF 4)完全溶解于碳酸亚丙酯(PC)。所有器件都在电化学双层电容器(EDLC)的类型,掺入薄纸的四层隔板材料。在这样制造的电极的表面形貌的扫描电极显微术(SEM)进行了研究。整体电池性能用一个多通道电位/恒电流/阻抗分析器评价。每个超级电容器单元以各种扫描速率从0.01V,进行循环伏安法(CV)/ s至1个V /秒,充电 - 放电在一个固定的电流的步骤(2 MA)和电化学阻抗谱(EIS)与来自10的频率范围内MHz至1兆赫。它建立一个基于AC-超级电容器与0.15%w / w的MWNT内容且30μm辊涂,纳米复合材料的电极,而细胞浸入在电解质中提供优越的能量和功率密度和能量密度;远高于由基于AC-EDLC细胞生成的那些。

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