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DEVELOPMENT OF A PRINTED IMPEDANCE BASED ELECTROCHEMICAL SENSOR ON PAPER SUBSTRATE

机译:在纸基材上的印刷阻抗基电化学传感器的研制

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A novel printed impedance based electrochemical sensor has been successfully developed on a paper substrate for the detection of various bio/chemicals. This flexible analytical device was fabricated by screen printing a two electrode sensor configuration on a wax-printed chromatography paper substrate. Silver (Ag) ink was used for screen printing the working and circular electrodes. The capability of the fabricated electrochemical sensor for detecting trace concentrations of bio/chemicals such potassium chloride (KCl) and glucose (C6H12O6) was investigated. The electrical impedance spectroscopy (EIS) based response of the printed sensor revealed detection levels as low as picomolar (pM) concentrations as well as the capability of the sensor to distinguish among varying levels (pico, nano, micro and milli) of sample concentrations. The response of the developed electrochemical sensor has been analyzed and is presented in this paper.
机译:一种新型印刷阻抗的电化学传感器已在纸基材上成功开发,用于检测各种生物/化学物质。通过筛选在蜡印刷的色谱纸基材上印刷两个电极传感器构造来制造该柔性分析装置。银(Ag)墨水用于印刷加工和圆形电极。研究了用于检测痕量生物/化学物质这种氯化钾(KCl)和葡萄糖(C6H12O6)的痕量浓度的电化学传感器的能力。印刷传感器的基于电阻抗谱(EIS)响应显示出低至皮摩尔(PM)浓度的检测水平以及传感器的能力,以区分样品浓度的不同水平(微微,纳米,微毫和毫毫秒)。已经分析了开发的电化学传感器的响应并提出了本文。

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