首页> 外文会议>International Conference on Radar, Antenna, Microwave, Electronics and Telecommunications >Screen Printed Electrochemical Sensor for Ascorbic Acid Detection Based on Nafion/Ionic Liquids/Graphene Composite on Carbon Electrodes
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Screen Printed Electrochemical Sensor for Ascorbic Acid Detection Based on Nafion/Ionic Liquids/Graphene Composite on Carbon Electrodes

机译:基于Nafion /离子液体/石墨烯复合材料的屏蔽印刷电化学传感器用于抗坏血酸检测碳电极上的石墨烯复合材料

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The material modification of thick film sensor electrodes is being developed to enhance the performance of sensing capabilities such as stability, sensitivity, and limit detection. The utilization of graphene, ionic liquid, and Nafion has become a key factor to obtain a good material as modifiers in electrochemical sensors. This disposable modified electrode exhibits excellent current enhancement, fast electron transfer kinetics, and chemical stability properties. In this research, a screen-printed electrochemical sensor was fabricated by modifying the carbon working electrode with a combination of Nafion, ionic liquid, and graphene to determine ascorbic acid. The prototype ascorbic acid (AA) sensors show peak oxidation at a potential 0.3 V vs reference Ag|AgCl. Analytical characteristics of the prototype sensors were investigated with a linear calibration curves of AA concentrations over the range from 0.25 to 2 mM (R2 ~ 0.9912). The sensor has sensitivity around 15.95 nA M−1 cm−2 and the limit of detection was 164 μM. The cyclic voltammogram result indicate that the modified working electrode can increase the redox peak current higher than the bare working electrode. Thus, the modified electrode of thick film sensors could provide a promising platform for the sensor of ascorbic acid detection.
机译:正在开发厚膜传感器电极的材料改变以增强感测能力的性能,例如稳定性,灵敏度和极限检测。石墨烯,离子液体和Nafion的利用已成为在电化学传感器中获得良好材料作为改性剂的关键因素。该一次性改性电极具有出色的电流增强,快速电子转移动力学和化学稳定性。在该研究中,通过用Nafion,离子液体和石墨烯的组合改变碳工作电极来制造丝网印刷的电化学传感器,以确定抗坏血酸。原型抗坏血酸(AA)传感器在潜在的0.3V VS参考作品中显示出峰值氧化。研究了原型传感器的分析特性,使用0.25至2 mm的AA浓度的线性校准曲线进行了研究(R. 2 〜0.9912)。传感器具有约15.95纳米的敏感性 -1 厘米 -2 并且检测限为164μm。循环伏安图结果表明改进的工作电极可以增加比裸露工作电极高的氧化还原峰值电流。因此,厚膜传感器的改性电极可以为抗坏血酸检测传感器提供有希望的平台。

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