Development of a Novel Three-Dimensional Parallel-Plate Biochemical Sensor for Electrochemical Impedance Spectroscopy (EIS)

Negar Rafiee, Brian S. Huffman, M. Shavezipur
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Abstract

Miniaturized electrochemical impedance-based biochemical sensors have been extensively used for detection of chemical and biological agents at extremely low concentrations. The majority of the sensors presented in the literature have a two-dimensional (planar) geometry and use two interdigitated electrodes that are exposed to an aqueous solution for deteciotn. In this work, a novel three-dimensional sensor is presented that uses a parallel-plate geometry for sensor structure. The sensor has a digitated electrode patterned on the substrate and a planar and porous electrode suspended above the fixed electrode. The sensor is fabricated using PolyMUMPs and diethylhexyl phthalate (DEHP) is used to demonstrate the ability of the sensor for biochemical detection. The measurement results show that the sensor has distinct Nyquist responses for 0.02 ppm, 0.2 ppm, 2 ppm and 10 ppm concentrations of the DEHP. Different electrochemical phenomena such as double-layer capacitance formation and charge transport at high frequencies, and diffusion at low frequencies are detected using Nyquist plots. The experimental results show that, for 3D parallel-plate sensors, in contrast to interdigitated geometry, the electrostatic effect is noticeable, and the parallel-plate capacitance due to the dielectric effect of the solution notably affects the Nyquist response. This is an important effect, specially for biological detection.
新型三维平行板电化学阻抗谱生化传感器的研制
小型化电化学阻抗型生化传感器已广泛应用于检测极低浓度的化学和生物制剂。文献中提出的大多数传感器具有二维(平面)几何形状,并使用暴露于水溶液中的两个交叉电极进行检测。在这项工作中,提出了一种新型的三维传感器,该传感器采用平行板几何结构。所述传感器具有在所述衬底上图案化的数字化电极和悬浮在所述固定电极上方的平面多孔电极。该传感器由PolyMUMPs和邻苯二甲酸二乙基己基酯(DEHP)制成,用于证明传感器的生化检测能力。测量结果表明,该传感器对浓度为0.02 ppm、0.2 ppm、2 ppm和10 ppm的DEHP具有明显的奈奎斯特响应。利用奈奎斯特图检测了不同的电化学现象,如高频双层电容形成和电荷输运以及低频扩散。实验结果表明,对于三维平行板传感器,与交叉几何结构相比,静电效应明显,且溶液介电效应引起的平行板电容显著影响奈奎斯特响应。这是一个重要的效应,特别是对于生物检测。
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