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A comparison of single-wall carbon nanotube electrochemical capacitor electrode fabrication methods

机译:单壁碳纳米管电化学电容器电极制造方法的比较

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Carbon nanotubes (CNTs) are being widely investigated as a replacement for activated carbon in super-capacitors. A wide range of CNT specific capacitances have been reported in the literature based on experiments using different CNT materials, fabrication methods, and characterization routines; making it difficult to draw conclusions about the relative merits of the different fabrication methods. This work systematically compares four solution-based electrode fabrication methods (drop casting, air brushing, filtration, and electrospraying) and, to a lesser extent, some solution preparation techniques to determine if there is an optimum method for fabricating electrochemical capacitor electrodes out of single-wall CNTs (SWCNTs). We have found that it is best to use CNT solutions free from additives that may be difficult to remove from the fabricated electrode. In addition, the CNT solution preparation (e.g., dilution and sonication) had little effect on the resulting specific capacitance. Large differences in performance due to the fabrication methods were not seen, and the differences that were seen could be ascribed to material loss or contamination during the deposition. A single-layer graphene electrode was also fabricated and tested to obtain an estimate of the specific capacitance potentially achievable with SWCNTs, with 550 F/g demonstrated using 1 molar (M) sulfuric acid.
机译:碳纳米管(CNT)被广泛研究作为超级电容器中活性炭的替代品。基于使用不同CNT材料,制造方法和表征程序的实验,文献中已经报道了各种各样的CNT比电容。因此很难得出关于不同制造方法的相对优点的结论。这项工作系统地比较了四种基于溶液的电极制造方法(滴铸,空气刷涂,过滤和电喷涂),并在较小程度上比较了一些溶液制备技术,以确定是否存在从单个电极中制造电化学电容器电极的最佳方法。壁碳纳米管(SWCNT)。我们已经发现,最好使用不含添加剂的CNT溶液,这些添加剂可能很难从制成的电极上去除。另外,CNT溶液的制备(例如,稀释和超声处理)对所得的比电容影响很小。由于制造方法而导致的性能差异不大,并且所看到的差异可能归因于沉积过程中的材料损失或污染。还制造并测试了单层石墨烯电极,以获得对SWCNT可能实现的比电容的估计值,其中使用1摩尔(M)硫酸证明了550 F / g。

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