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Electroanalytical sensing of chromium(iii) and (vi) utilising gold screen printed macro electrodes

机译:利用金丝网印刷宏观电极对铬(iii)和(vi)进行电分析感应

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摘要

We report the fabrication of gold screen printed macro electrodes which are electrochemically characterised and contrasted to polycrystalline gold macroelectrodes with their potential analytical application towards the sensing of chromium(iii) and (vi) critically explored. It is found that while these gold screen printed macro electrodes have electrode kinetics typically one order of magnitude lower than polycrystalline gold macroelectrodes as is measured via a standard redox probe, in terms of analytical sensing, these gold screen printed macro electrodes mimic polycrystalline gold in terms of their analytical performance towards the sensing of chromium(iii) and (vi), whilst boasting additional advantages over the macro electrode due to their disposable one-shot nature and the ease of mass production. An additional advantage of these gold screen printed macro electrodes compared to polycrystalline gold is the alleviation of the requirement to potential cycle the latter to form the required gold oxide which aids in the simplification of the analytical protocol. We demonstrate that gold screen printed macro electrodes allow the low micro-molar sensing of chromium(vi) in aqueous solutions over the range 10 to 1600 μM with a limit of detection (3σ) of 4.4 μM. The feasibility of the analytical protocol is also tested through chromium(vi) detection in environmental samples.
机译:我们报告了金丝网印刷的宏观电极的制造,这些电极具有电化学特性,并且与多晶金宏观电极形成对比,其潜在的分析应用对铬(iii)和(vi)进行了严格探索。已经发现,尽管这些金丝网印刷的宏观电极的电极动力学通常比通过标准氧化还原探针测量的多晶金宏观电极低一个数量级,但是在分析感测方面,这些金丝网印刷的宏观电极在模拟意义上模仿多晶金。它们对铬(iii)和(vi)的检测具有出色的分析性能,同时由于其一次性使用的一次性特性和易于批量生产而拥有比宏电极更大的优势。与多晶金相比,这些金丝网印刷的宏观电极的另一个优势是减轻了对电位循环的需求,后者可以循环形成所需的氧化金,从而有助于简化分析方案。我们证明了金丝网印刷的宏观电极允许在10至1600μM范围内的水溶液中铬(vi)的低微摩尔感测,检测限(3σ)为4.4μM。还通过在环境样品中检测六价铬来测试分析方案的可行性。

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