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Doped pencil leads for drawing modified electrodes on paper-based electrochemical devices

机译:用于在纸质电化学设备上绘制修饰电极的掺杂铅笔芯

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摘要

A simple strategy is here described for assembling graphite-based pencil leads doped with electrode modifiers suitable for drawing electrochemical devices on porous materials such as paper in a very reproducible and easy way. They were prepared by mixing controlled amounts of the chosen modifier with different quantities of carbon powder (conductive material), sodium bentonite (binding agent) and sodium silicate (hardening agent). After pressurisation, these mixtures were extruded at room temperature from a suitable die in thin rods which were then inserted in commercial lead holders to facilitate their use for drawing electrodes on paper. Lead composition (80% graphite powder; 8% sodium bentonite; 12% potassium silicate) and their fabrication procedure were optimised by drawing working electrodes for paperbased electrochemical cells with leads prepared with different contents of their components and evaluating their performance by voltammetric measurements conducted on hexacyanoferrate(II). Two prototype species (decamethylferrocene and cobalt(II) phtalocyanine, chosen as model compounds displaying a reversible redox process and versatile electrocatalytic properties, respectively) were assayed for doping leads. A quite satisfactorily reversible electrochemical behaviour was observed for decamethylferrocene incorporated into graphite-based working electrodes drawn on paper-based cells (RSD% for peak height and peak potential of 4.1 and 2.4, respectively) and a good electrocatalytical activity towards cysteine and hydrogen peroxide was displayed by graphite-based working electrodes modified by cobalt(II) phtalocyanine.
机译:这里描述了一种简单的策略,用于组装掺杂有电极改性剂的石墨基铅笔芯,该电极改性剂适用于以非常可复制且容易的方式在多孔材料(如纸)上绘制电化学装置。它们是通过将受控量的所选改性剂与不同量的碳粉(导电材料),膨润土钠(粘结剂)和硅酸钠(硬化剂)混合而成的。加压后,将这些混合物在室温下从合适的模具中挤压成细棒,然后将其插入市售的引线支架中,以利于将其用于在纸上绘制电极。铅组成(80%的石墨粉; 8%的膨润土; 12%的硅酸钾)及其制造工艺已通过以下方法进行了优化:绘制用于纸基电化学电池的工作电极,其中电极的成分含量不同,并通过伏安法进行伏安测量评估其性能高铁六氰化物(II)。分析了两种原型物质(十甲基二茂铁和钴(II)酞菁,分别被选作显示可逆氧化还原过程和通用电催化性能的模型化合物)用于掺杂铅。十甲基二茂铁被引入到纸基电池上绘制的石墨基工作电极中时,观察到令人满意的可逆电化学行为(峰高和峰电位分别为4.1和2.4的RSD%),并且对半胱氨酸和过氧化氢具有良好的电催化活性。由钴酞菁修饰的石墨基工作电极显示。

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