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The Mediatorless Electroanalytical Sensing of Sulfide Utilizing Unmodified Graphitic Electrode Materials

机译:利用未修饰的石墨电极材料进行硫化物的无介质电分析传感

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The mediatorless electroanalytical sensing of sulfide is explored at a range of commercially available graphitic based electrodes namely, edge and basal plane pyrolytic graphite (EPPGE and BPPGE, respectively), boron-doped diamond (BDDE), glassy carbon (GCE) and screen-printed electrodes (SPE). The electrochemical performance is evaluated in terms of current density/analytical signal and oxidation potential, where the GCE and SPE are found to possess the optimal electrochemical responses. The electroanalytical performance of the GCE is explored towards the electrochemical sensing of sulfide and it is found that it is hampered by sulfide passivation, thus requiring pretreatment in the form of electrode polishing between each measurement. We demonstrate that SPEs provide a simple analytically comparable alternative, which, due to their scales of economy, create disposable, one-shot sensors that do not require any pretreatment of the electrode surface. To the best of our knowledge, this is the first report using mediatorless SPEs (bare/unmodified) towards the sensing of sulfide. In addition, the electroanalytical efficacy of the SPEs is also explored towards the detection of sulfide within model aqueous solutions and real drinking water samples presenting good apparent recoveries, justifying the plausibility of this graphitic mediatorless screen-printed platform.
机译:在一系列可商购的石墨基电极上探索了硫化物的无介质电分析感应,即边缘和基面热解石墨(分别为EPPGE和BPPGE),掺硼金刚石(BDDE),玻璃碳(GCE)和丝网印刷电极(SPE)。根据电流密度/分析信号和氧化电位评估电化学性能,发现GCE和SPE具有最佳的电化学响应。探索了GCE的电分析性能,以进行硫化物的电化学检测,发现GCE受硫化物钝化的影响,因此需要在每次测量之间以电极抛光的形式进行预处理。我们证明SPE提供了一种简单的,可分析的,可比较的替代方案,由于其经济规模,它可以创建一次性的一次性传感器,而无需对电极表面进行任何预处理。据我们所知,这是第一份使用无介质SPE(裸露/未修饰)用于硫化物传感的报告。此外,还探索了SPEs的电分析功效,可用于检测模型水溶液和具有良好表观回收率的实际饮用水样品中的硫化物,从而证明了该无石墨介质的丝网印刷平台的合理性。

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