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INVESTIGATION OF THE EFFECT OF NATIVE OXIDE LAYER ON PERFORMANCE OF INTERDIGITATED IMPEDANCE-BASED SILICON BIOCHEMICAL SENSORS

机译:天然氧化物层对基于阶段硅生物化学传感器性能的影响研究

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Chemical and biological detection using Electrochemistry Impedance Spectroscopy (EIS) highly depends on the electrical characteristics of the electrodes used in the measurement process. In this work, the effect of surface coating on behavior of interdigitated impedance-based biochemical sensors is studied. Two interdigitated sensors with the same geometry and different electrode materials are fabricated using a standard process. One electrode is made of gold and the other electrode is made of polycrystalline silicon covered with a thin layer of native silicon dioxide. Different concentrations of di(2-ethylhexyl) phthalate (DEHP) in water are used and the Nyquist responses of the two sensors exposed to these solutions are obtained. The measurement results show that at high frequency both sensors form double-layer capacitance values on their electrode surfaces, however, the silicon sensor has a much lower double-layer capacitance values, because formation of oxide layer adds to the gap between charges at the interface of the electrode and the solution. Moreover, comparing the low frequency regions of the Nyquist plots for two sensors shows that the presence of oxide layer affects the Warburg effect and the charge diffusion near the surface of the electrode, creating an extra capacitive element in series with the diffusion effect. The results of this work may be extended to other interdigitated biochemical sensors that may have other sources of contamination on their surfaces.
机译:使用电化学阻抗光谱(EIS)的化学和生物检测高度取决于测量过程中使用的电极的电特性。在这项工作中,研究了表面涂层对基于阶段基于抗冲击的生化传感器的行为的影响。使用标准工艺制造具有相同几何形状和不同电极材料的两个互指传感器。一个电极由金制成,另一个电极由多晶硅制成,覆盖有薄的天然二氧化硅层的多晶硅制成。使用不同浓度的水(2-乙基己基)水溶液(DEHP),并获得暴露于这些溶液的两个传感器的奈奎斯特应答。测量结果表明,在高频下,两个传感器在其电极表面上形成双层电容值,然而,硅传感器具有更低的双层电容值,因为氧化物层的形成增加了接口电荷之间的间隙电极和溶液。此外,比较两个传感器的奈奎斯特图的低频区域表明,氧化物层的存在影响电极表面附近的Warburg效应和电荷扩散,与扩散效果串联形成额外的电容元件。该作品的结果可以扩展到其他互化的生物化学传感器,其表面可以在其表面上具有其他污染源。

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