用于检测水溶液中化学物质的三维阻抗传感器

E. ToloueiNadia, Mazrouei Roya, S. Mohammad
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引用次数: 1

摘要

本文介绍了用于检测水溶液中化学物质和生物制剂的三维阻抗型生化传感器的发展。传感器由一堆悬浮电极组成,溶液可以占据它们之间的空间,并在水溶液和电极之间形成更大的界面区域。增加溶液-电极界面面积会极大地改变传感器溶液的阻抗,从而获得更好的灵敏度。在去离子水中使用低浓度的邻苯二甲酸二乙基己酯(DEHP)作为目标化学物质,以证明新设计优于传统的平面交叉指状传感器。实验测量了平面传感器和三维传感器的响应特性,并比较了它们的奈奎斯特图,显示出三维传感器的灵敏度有显著提高。建立了考虑双层电容、溶液电阻、华宝效应和寄生参数等不同物理现象的传感器电模型。实验数据的非线性插值表明,等效电路与实验数据得到的奈奎斯特图符合得很好。将试验数据与等效电路进行曲线拟合,表明模型与试验数据吻合较好。
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Three-Dimensional Impedance-Based Sensors for Detection of Chemicals in Aqueous Solutions
In this work, the development of three-dimensional impedance-based biochemical sensors for detection of chemicals and biological agents in aqueous solutions is presented. The sensors are made of a stack of suspended electrodes that allow the solution to occupy the space between them and create a larger interface area between the aqueous solution and the electrodes. Increasing the solution-electrode interface area drastically changes the impedance of the sensor-solution resulting in a better sensitivity. Low concentrations of di-ethylhexyl phthalate (DEHP) in deionized water are used as the target chemical to demonstrate the advantage of new design over conventional planar interdigitated sensors. Experimental measurements are carried out to characterize the response of the planar and 3D sensors and their Nyquist plots are compared, displaying significant sensitivity improvement in 3D sensors. An electrical model for the sensors is developed that considers different physical phenomena such as doublelayer capacitance, solution resistance, Warburg effect and parasitic parameters. Nonlinear interpolations of the experimental data show that the equivalent electrical circuit is in good agreement with the Nyquist plots obtained from test data. The curve fitting of the tested data to the equivalent electrical circuit displays good agreement between the model and the tested data.
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