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首页> 外文期刊>Sensors and Actuators >Chemiresistor sensors array optimization by using the method of coupled statistical techniques and its application as an electronic nose for some organic vapors recognition
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Chemiresistor sensors array optimization by using the method of coupled statistical techniques and its application as an electronic nose for some organic vapors recognition

机译:Chemiresistor传感器阵列的优化使用耦合统计技术的方法及其作为电子鼻识别某些有机蒸气的应用

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摘要

An electronic nose (EN) based on an array of chemiresistors, combined with a preconcentrator unit, for the detection of some volatile organic vapors was developed. In order to choose the proper polymers, seven potential polymers were chosen from numerous available polymers according to the principle of the linear solvation energy relationship (LSER). Different possible sensors arrays (128 arrays) composed of these seven polymers were designed by full factorial design (FFD). Principal component analysis (PCA) showed that four of seven polymers had enough ability to recognize different gas classes. By using Hierarchical cluster analysis (HCA), the tested polymers were categorized into four main groups with respect to their recognition ability. Combination of the FFD with PCA and HCA, brought to the identification of 8 proper arrays containing four polymers in each array. Precisely evaluation of predicted arrays with respect to their calculated resolution factors showed that the electronic nose containing the polymers of 75% pheny 125% methylpoiysiloxane (OV25), hexafluoro-2-propanolsubstituted polysiloxane (SXFA), poly bis(cyanopropyl)-siloxane (SXCN) and poly(ethylene maleate) (PEM) was the most proper design for recognition of analytes of interest. The fabricated EN was used successively for target gas recognition at three different concentralions.
机译:开发了一种基于化学电阻器阵列和预浓缩器单元的电子鼻(EN),用于检测一些挥发性有机蒸气。为了选择合适的聚合物,根据线性溶剂化能量关系(LSER)的原理,从众多可用的聚合物中选择了七个潜在的聚合物。通过全因子设计(FFD)设计了由这七种聚合物组成的不同可能的传感器阵列(128个阵列)。主成分分析(PCA)表明,七种聚合物中的四种具有足够的能力来识别不同的气体类别。通过使用层次聚类分析(HCA),就其识别能力而言,测试的聚合物可分为四个主要组。将FFD与PCA和HCA结合使用,可以鉴定8个合适的阵列,每个阵列中包含4种聚合物。精确评估预测阵列的计算分辨率系数表明,电子鼻中包含75%的苯基,125%的甲基聚硅氧烷(OV25),六氟-2-丙醇取代的聚硅氧烷(SXFA),聚双(氰丙基)-硅氧烷(SXCN)的聚合物)和聚(马来酸乙烯酯(PEM))是识别目标分析物的最合适设计。所制造的EN被连续用于三个不同浓度的目标气体识别。

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