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Discrimination of volatile organic compounds using CMOS capacitive chemical microsensors with thickness-adjusted polymer coating

机译:使用厚度可调的聚合物涂层的CMOS电容式化学微传感器识别挥发性有机化合物

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Abstract: We present a new method for discriminating organic vapors based on the variation of capacitance changes of an interdigitated CMOS capacitor with the thickness of the sensitive polymer layer. By carefully adjusting the thickness of the polymer layer, discrimination potential in addition to the chemical selectivity of the polymer is provided by the fact that the interdigitated capacitor signals depend on the layer thickness. At polymer thicknesses small compared to the center-to-center spacing of the electrodes, an increase in capacitance is observed for all analytes, whereas for thick layers, the direction of the capacitance changes depends on the dielectric constant of the analyte. Sensors can be designed to be insensitive towards a certain analyte by varying the polymer thickness. Measurements for volatile organic compounds using CMOS capacitors coated with different polymer thicknesses are presented to demonstrate the new way of increasing sensor selectivity.!5
机译:摘要:我们提出了一种新的识别有机蒸气的方法,该方法基于叉指式CMOS电容器的电容变化随敏感聚合物层厚度的变化而变化。通过小心地调节聚合物层的厚度,由于交叉指的电容器信号取决于层的厚度这一事实,除了提供聚合物的化学选择性之外,还提供了鉴别潜力。与电极中心间距相比,聚合物厚度较小时,所有分析物的电容均会增加,而厚层的电容变化方向取决于分析物的介电常数。通过改变聚合物的厚度,可以将传感器设计成对某种分析物不敏感。提出了使用涂有不同聚合物厚度的CMOS电容器对挥发性有机化合物进行的测量,以证明提高传感器选择性的新方法。5

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