Optimization and characterization of inkjet printed interdigitated electrode geometries for impedance measurements

Kunj Himanshu Vora, N. Kordas, K. Seidl
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Abstract

There is an increasing demand for continuous monitoring of biochemical parameters. Such applications require label-free sensing techniques which can be implemented on a variety of substrates. An impedance spectroscopy-based technique, using interdigitated electrodes is described. The electrodes with different geometrical parameters are fabricated by inkjet printing of silver nanoparticles on a flexible polyethylene substrate. The electrodes geometries differ in their metallization ratios. Impedance measurements are performed with DI water to determine the influence of metallization ratio on the electrode capacitance. From these results, the electrode that offers the highest capacitance is further characterized by measurements with ethanol-water mixtures. The results show that there is a decrease in capacitance of 0.1 pF per % increase of ethanol concentration. This is due to the decrease in permittivity as the ethanol concentration increases. The sensor is sensitive to the changing permittivity values. Therefore, an impedance-based, label-free, sensor concept on flexible substrate has been implemented.
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用于阻抗测量的喷墨印刷交叉数字电极几何形状的优化和表征
对生化参数的连续监测的需求日益增加。这样的应用需要无标签传感技术,这种技术可以在各种基板上实现。描述了一种基于阻抗谱的交叉电极技术。通过在柔性聚乙烯基板上喷墨打印银纳米颗粒,制备了具有不同几何参数的电极。电极的几何形状在金属化比率上有所不同。用去离子水进行阻抗测量,以确定金属化率对电极电容的影响。从这些结果中,提供最高电容的电极通过乙醇-水混合物的测量进一步表征。结果表明,乙醇浓度每增加1%,电容就会降低0.1 pF。这是由于随着乙醇浓度的增加介电常数降低。传感器对介电常数值的变化很敏感。因此,在柔性基板上实现了基于阻抗、无标签的传感器概念。
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