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Carbon nanotube purification: Preparation and characterization of carbon nanotube paste electrodes

机译:碳纳米管纯化:碳纳米管糊状电极的制备和表征

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Paste electrodes have been constructed using single-wall carbon nanotubes mixed with mineral oil. The electrochemical behavior of such electrodes prepared with different percentages of carbon nanotubes has been compared with that of graphite paste electrodes and evaluated with respect to the electrochemistry of ferricyanide with cyclic voltammetry. Carbon nanotubes were purified by a treatment with concentrated nitric acid, then oxidized in air. In addition, electrochemical pretreatments were carried out to increase the selectivity of carbon nanotube electrodes. Performances of carbon nanotube paste and carbon paste electrodes were evaluated by studying such parameters as current peak, DeltaE(p), anodic and cathodic current ratio, and charge density toward several different electroactive molecules. Data interpretation based on the carbon nanotubes and carbon surface area is presented. Carbon nanotube paste and carbon paste electrodes were tested as H2O2 and NADH probes, and several analytical parameters were evaluated. The oxidative behavior of dopamine was examined at these electrodes. The two-electron oxidation of dopamine to dopaminequinone showed an excellent reversibility in cyclic voltammetry that was significantly better than that observed at carbon paste electrodes. [References: 47]
机译:粘贴电极是使用单壁碳纳米管与矿物油混合制成的。已经将用不同百分比的碳纳米管制备的这种电极的电化学行为与石墨糊状电极的电化学行为进行了比较,并通过循环伏安法对铁氰化物的电化学进行了评估。通过用浓硝酸处理纯化碳纳米管,然后在空气中氧化。另外,进行了电化学预处理以增加碳纳米管电极的选择性。通过研究诸如电流峰值,DeltaE(p),阳极和阴极电流比以及对几种不同电活性分子的电荷密度等参数,评估了碳纳米管糊和碳糊电极的性能。提出了基于碳纳米管和碳表面积的数据解释。将碳纳米管糊和碳糊电极用作H2O2和NADH探针,并评估了一些分析参数。在这些电极上检查了多巴胺的氧化行为。多巴胺的双电子氧化为多巴胺醌在循环伏安法中显示出优异的可逆性,该可逆性显着优于在碳糊电极上观察到的可逆性。 [参考:47]

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