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Chemically modified platinum screen-printed electrodes for electrochemical detection of acetylene

机译:化学改性铂丝网印刷电极,用于乙炔的电化学检测

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A three-electrodes potentiostatic cell was fabricated for acetylene detection in the range of 500 to 10000 ppm. The working electrode (sensing) was fabricated by depositing gold on Teflon electrodes. The auxiliary (counter) and the reference electrodes were defined on Al2O3 using platinum serigraphic paste. The platinum screen-printed electrodes were chemically modified by dipping in 1HF(49%):10H2O solution (d-HF) for times ranging from 10 to 120 min to obtain a three-electrodes potentiostatic cell for acetylene detection. Cyclic voltammetry indicated voltage-separation decreasing of the redox peaks and peak-current increasing when time in d-HF was increased. Surface morphology has changed after dipping in d-HF. It was noteworthy that valley-to-peak height and valley area increased, which meant better performance of the auxiliary and reference electrodes. As a result, a stable electrochemical sensor was fabricated with a detection limit of 500 ppm for acetylene dissolved in argon.
机译:为乙炔检测制备三电极肺部诱导池,在500至10000ppm的范围内。通过在Teflon电极上沉积金制造工作电极(感测)。使用铂丝膏浆料在Al2O3上定义辅助(计数器)和参考电极。通过在10至120分钟的10至120分钟内浸渍在1HF(49%):10H 2 O溶液(D-HF)中进行化学改性铂丝网印刷电极,得到用于乙炔检测的三电极稳定性电池。循环伏安法指示氧化还原峰值的电压分离降低和D-HF中的时间升高时的峰值电流增加。在D-HF浸渍后表面形态发生变化。值得注意的是,谷到峰值高度和谷地区的增加,这意味着辅助和参考电极的性能更好。结果,用溶解在氩气中的乙炔500ppm的检测极限制造稳定的电化学传感器。

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