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Optimization of composite polymer gas sensor arrays for single-analyte multiple-interferent applications

机译:用于单分析物多干扰应用的复合聚合物气体传感器阵列的优化

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Results for optimizing an array of composite polymer gas sensors for sensing one of five analytes in the presence of up to four interferents are presented. The optimized array consists of a heterogeneous array of up to ten points (unlike sensors) in multi-dimensional sensor space. The optimization techniques presented here are linear, since the composite polymer sensors in their useful (low concentration) operating range exhibit linear and additive response characteristics. The optimization of these arrays produces maximum separability between analytes, demonstrating the trade-off between the addition of both information and variability induced by increasing the size of the heterogeneous array. Optimization results for sensing acetone, hexane, thf, toluene, and ethanol in the presence of interferents result in array sizes that are significantly less than the maximum available number of sensors (10). This result adds fuel to the argument that fewer sensors are better; the argument for more sensors is also made in the context of the electronic nose systems where significant chemical diversity is required.
机译:提供了优化用于在最多4个干涉的存在中感测的复合聚合物气体传感器阵列的结果。优化的阵列由多维传感器空间中的多于十个点(不同传感器)的异构阵列组成。这里呈现的优化技术是线性的,因为复合聚合物传感器在其有用(低浓度)的操作范围内具有线性和添加剂响应特性。这些阵列的优化产生了分析物之间的最大可分离能力,证明通过增加异构阵列的尺寸来增加信息和变异性之间的折衷。在干扰的情况下感测丙酮,己烷,THF,甲苯和乙醇的优化结果导致阵列尺寸明显小于最大可用传感器(10)。该结果为较少传感器更好的论点增加了燃料;更多传感器的参数也是在需要显着化学多样性的电子鼻系统的上下文中进行的。

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