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Electrochemical, morphological and microstructural characterization of carbon film resistor electrodes for application in electrochemical sensors

机译:用于电化学传感器的碳膜电阻器电极的电化学,形态和微观结构表征

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摘要

The electrochemical and microstructural properties of carbon film electrodes made from carbon film electrical resistors of 1.5, 15, 140 [Omega] and 2.0 k[Omega] nominal resistance have been investigated before and after electrochemical pre-treatment at +0.9 V vs SCE, in order to assess the potential use of these carbon film electrodes as electrochemical sensors and as substrates for sensors and biosensors. The results obtained are compared with those at electrodes made from previously investigated 2 [Omega] carbon film resistors. Cyclic voltammetry was performed in acetate buffer and phosphate buffer saline electrolytes and the kinetic parameters of the model redox system Fe(CN)63-/4- obtained. The 1.5 [Omega] resistor electrodes show the best properties for sensor development with wide potential windows, similar electrochemical behaviour to those of 2 [Omega] and close-to-reversible kinetic parameters after electrochemical pre-treatment. The 15 and 140 [Omega] resistor electrodes show wide potential windows although with slower kinetics, whereas the 2.0 k[Omega] resistor electrodes show poor cyclic voltammetric profiles even after pre-treatment. Electrochemical impedance spectroscopy related these findings to the interfacial properties of the electrodes. Microstructural and morphological studies were carried out using contact mode Atomic Force Microscopy (AFM), Confocal Raman spectroscopy and X-ray diffraction. AFM showed more homogeneity of the films with lower nominal resistances, related to better electrochemical characteristics. X-ray diffraction and Confocal Raman spectroscopy indicate the existence of a graphitic structure in the carbon films.
机译:在+ 0.9V vs SCE的条件下进行电化学预处理之前和之后,已研究了由标称电阻为1.5、15、140Ω和2.0kΩ的碳膜电阻器制成的碳膜电极的电化学和微观结构特性。为了评估这些碳膜电极作为电化学传感器以及传感器和生物传感器基板的潜在用途。将获得的结果与以前研究过的2Ω碳膜电阻器制成的电极进行比较。循环伏安法在乙酸盐缓冲液和磷酸盐缓冲液盐水中进行,并获得了模型氧化还原系统Fe(CN)63- / 4-的动力学参数。 1.5Ω电阻器电极具有宽电位窗,与2Ω相似的电化学行为以及经过电化学预处理的接近可逆的动力学参数,显示出传感器开发的最佳性能。 15和140Ω电阻器电极显示出较宽的电位窗口,尽管动力学较慢,而2.0kΩ电阻器电极即使经过预处理也显示出较差的循环伏安曲线。电化学阻抗谱将这些发现与电极的界面特性相关联。使用接触模式原子力显微镜(AFM),共焦拉曼光谱和X射线衍射进行了微观结构和形态研究。原子力显微镜显示具有较低标称电阻的薄膜更均匀,这与更好的电化学特性有关。 X射线衍射和共聚焦拉曼光谱表明碳膜中存在石墨结构。

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