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Electrochemical Properties of Screen-Printed Carbon Nano-Onion Electrodes

机译:丝网印刷碳纳米洋葱电极的电化学性能

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摘要

The properties of carbon nano-onions (CNOs) make them attractive electrode materials/additives for the development of low-cost, simple to use and highly sensitive Screen Printed Electrodes (SPEs). Here, we report the development of the first CNO-based ink for the fabrication of low-cost and disposable electrodes, leading to high-performance sensors. Achieving a true dispersion of CNOs is intrinsically challenging and a key aspect of the ink formulation. The screen-printing ink formulation is achieved by carefully selecting and optimising the conductive materials (graphite (GRT) and CNOs), the polymer binder, the organic solvent and the plasticiser. Our CNO/GRT-based screen-printed electrodes consist of an interconnected network of conducting carbon particles with a uniform distribution. Electrochemical studies show a heterogeneous electron transfer rate constant of 1.3 ± 0.7 × 10−3 cm·s−1 and a higher current density than the ferrocene/ferrocenium coupled to a commercial graphite SPEs. In addition, the CNO/GRT SPE can detect dopamine in the concentration range of 10.0–99.9 µM with a limit of detection of 0.92 µM (N = 3). They exhibit a higher analytical sensitivity than the commercial graphite-based SPE, with a 4-fold improvement observed. These results open up the possibility of using high-performing CNO-based SPEs for electrochemical applications including sensors, battery electrodes and electrocatalysis.
机译:碳纳米洋葱(CNO)的性质使其具有吸引力的电极材料/添加剂,用于开发低成本,使用简单,使用高度敏感的屏幕印刷电极(SPE)。在这里,我们报告了制造低成本和一次性电极的第一个基于CNO的油墨,导致高性能传感器。实现CNO的真正分散性是内在的挑战性和油墨配方的关键方面。通过小心地选择和优化导电材料(石墨(GRT)和CNO),聚合物粘合剂,有机溶剂和增塑剂来实现丝网印刷油墨制剂。我们基于CNO / GRT的屏幕印刷电极包括具有均匀分布的碳颗粒的互连网络。电化学研究表明,异构电子传递速率常数为1.3±0.7×10-3cm·s-1,并且比耦合到商业石墨SPES的二茂铁/亚铁胶质更高的电流密度。另外,CNO / GRT SPE可以检测10.0-99.9μm的浓度范围内的多巴胺,其检测限为0.92μm(n = 3)。它们表现出比商业石墨的SPE更高的分析敏感性,观察到了4倍的改善。这些结果开辟了使用高性能的基于CNO的SPE的电化学应用,包括传感器,电池电极和电常值。

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