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Master Transduction Curve for Field-Structured Chemiresistor Calibration

机译:用于现场构造的化学电阻器校准的主转换曲线

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Chemiresistors are gas sensors for volatile organic compounds that are composed of conducting particle networks in a polymer matrix. In the presence of an analyte that is compatible with the polymer phase, the sensor conductance decreases as the analyte is absorbed, eventually reaching a steady-state value that is a measure of the analyte's concentration. The response curve, which is the relationship between steady-state conductance and analyte activity (normalized concentration), is strongly dependent on both the chemical affinity of the analyte for the polymer and the stress field within the chemiresistor composite. Calibration of an individual sensor would seem to necessitate mapping out the response curve for each analyte of interest, a tedious and expensive proposition. In a recent paper, we have shown that the transduction curve of any particular sensor is a function of polymer swelling alone, regardless of the chemical nature of the analyte. This master transduction curve implies that sensor calibration requires only a knowledge of the polymer mass-sorption isotherm for any set of analytes of interest, data that can be collected once and for all. Any single analyte can then be used to calibrate the response of a particular sensor as a function of analyte activity, and the response to other analytes can be predicted. As a corollary, a calibrated sensor can be used to determine the mass-sorption data for any other analyte of interest. In this paper, we provide a detailed description of the construction of the master transduction curve, show how this curve can be used to measure polymer sorption with a calibrated chemiresistor, and demonstrate the use of a single analyte to calibrate sensors of disparate sensitivities and predict their response to two other analytes.
机译:化学电阻器是用于挥发性有机化合物的气体传感器,其由在聚合物基质中的导电颗粒网络组成。在存在与聚合物相兼容的分析物时,传感器电导会随着分析物的吸收而降低,最终达到稳态值,该值是分析物浓度的量度。响应曲线是稳态电导率与分析物活性(标准化浓度)之间的关系,在很大程度上取决于分析物对聚合物的化学亲和力和化学反应器复合材料内的应力场。单个传感器的校准似乎需要绘制每种目标分析物的响应曲线,这是一个繁琐而昂贵的提议。在最近的一篇论文中,我们表明,任何特定传感器的转导曲线都是聚合物溶胀的函数,而与分析物的化学性质无关。该主转导曲线表明,对于任何感兴趣的分析物组,传感器校准仅需要了解聚合物质量吸附等温线,就可以一劳永逸地收集数据。然后,可以使用任何单一分析物根据分析物活性来校准特定传感器的响应,并可以预测对其他分析物的响应。因此,可以使用校准的传感器来确定任何其他感兴趣的分析物的质量吸附数据。在本文中,我们对主转导曲线的结构进行了详细描述,展示了如何将该曲线用于已校准的化学电阻器来测量聚合物的吸附,并演示了使用单一分析物来校准不同灵敏度的传感器并预测它们对另外两种分析物的响应。

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