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High Performance Carbon Nanotube Yarn Supercapacitors with a Surface-Oxidized Copper Current Collector

机译:具有表面氧化铜集流体的高性能碳纳米管纱线超级电容器

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Threadlike linear supercapacitors have demonstrated high potential for constructing fabrics to power electronic textiles (eTextiles). To improve the cyclic electrochemical performance and to produce power fabrics large enough for practical applications, a current collector has been introduced into the linear supercapcitors to transport charges produced by active materials along the length of the supercapacitor with high efficiency. Here, we first screened six candidate metal filaments (Pt, Au, Ag, AuAg, PtCu, and Cu) as current collectors for carbon nanotube (CNT) yarn-based linear supercapacitors. Although all of the metal filaments significantly improved the electrochemical performance of the linear supercapacitor, two supercapacitors constructed from Cu and PtCu filaments, respectively, demonstrate far better electrochemical performance than the other four supercapacitors. Further investigation shows that the surfaces of the two Cu-containing filaments are oxidized by the surrounding polymer electrolyte in the electrode. While the unoxidized core of the Cu-containing filaments remains highly conductive and functions as a current collector, the resulting CuO on the surface is an electrochemically active material. The linear supercapacitor architecture incorporating dual active materials CNT + Cu extends the potential window from 1.0 to 1.4 V, leading to significant improvement to the energy density and power density.
机译:线状线性超级电容器在构造织物以驱动电子纺织品(eTextiles)方面显示出很高的潜力。为了改善循环电化学性能并生产出足够大的用于实际应用的动力织物,已将集电器引入到线性超级电容器中,以沿超级电容器的长度高效地输送活性材料产生的电荷。在这里,我们首先筛选了六种候选金属丝(Pt,Au,Ag,AuAg,PtCu和Cu)作为碳纳米管(CNT)线型超级电容器的集电器。尽管所有金属丝都显着改善了线性超级电容器的电化学性能,但是分别由Cu和PtCu丝构成的两个超级电容器的电化学性能远优于其他四个超级电容器。进一步的研究表明,两条含铜细丝的表面被电极中周围的聚合物电解质氧化。含铜丝的未氧化核保持高导电性并起集电器的作用,表面上生成的CuO是电化学活性材料。包含双重活性材料CNT + Cu的线性超级电容器架构将电势窗口从1.0 V扩展到1.4 V,从而显着改善了能量密度和功率密度。

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