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Conducting absorbent composite for parallel plate chemicapacitive microsensors with improved selectivity

机译:具有改善的选择性的用于平行板化学吸收微传感器的导电吸收复合材料

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Conducting absorbent composites were prepared using two organic polymers (polar and nonpolar) mixed with conductive carbon nanoparticles and an ionic liquid (BMIPF_6). The mixture was deposited between the plates of chemicapacitive microsensors using ink-jet technology. Different coatings were characterized using SEM and DRIFTS techniques. The response magnitude for each sensor depends on numerous phenomenon but changes in permittivity of the analyte and polymer swelling dominate. The performance of individual chemicapacitive sensors were characterized through exposure to concentrations of various volatile organic compounds with different functional groups in a climate controlled vapor delivery system. Sensitivity, selectivity and limits of detection, of each prepared sensor, were compared and the discrimination power was evaluated using quadratic discriminant analysis. Ionic liquid doped polymers were able to enhance the sensitivity and the selectivity of parallel plate capacitive sensors. Improved analyte classification was achieved with the ionic liquid-doped polymers (97% accuracy) over the pure polymers. This preliminary study describes the first use of polymer composites with carbon black and ionic liquids as the absorbent dielectric layer in parallel plate microcapacitive sensors.
机译:使用两种有机聚合物(极性和非极性)与导电碳纳米颗粒和离子液体(BMIPF_6)混合制备导电吸收性复合材料。使用喷墨技术将混合物沉积在化学容性微传感器板之间。使用SEM和DRIFTS技术表征了不同的涂层。每个传感器的响应幅度取决于多种现象,但分析物介电常数的变化和聚合物溶胀占主导地位。通过在气候控制的蒸汽输送系统中暴露于具有不同官能团的各种挥发性有机化合物的浓度来表征各个化学容性传感器的性能。比较每个准备好的传感器的灵敏度,选择性和检测限,并使用二次判别分析评估判别力。离子液体掺杂的聚合物能够增强平行板电容式传感器的灵敏度和选择性。与纯聚合物相比,离子液体掺杂的聚合物可实现更高的分析物分类(准确性为97%)。这项初步研究描述了具有碳黑和离子液体的聚合物复合材料首次用作平行板微电容传感器中的吸收性介电层。

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