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Preparation and Properties of Vapor Detector Arrays Formed from Poly(3,4-ethylenedioxy)thiophene−Poly(styrene sulfonate)/Insulating Polymer Composites

机译:聚(3,4-乙撑二氧基)噻吩-聚(苯乙烯磺酸盐)/绝缘聚合物复合材料形成的蒸汽探测器阵列的制备和性能

摘要

Poly(3,4-ethylenedioxy)thiophene−poly(styrene sulfonate) (PEDOT−PSS) was used as the conductive component in a matrix of chemically different insulating polymers to form an array of vapor detectors. Such composites produced larger relative differential resistance responses when exposed to polar analytes than did the corresponding carbon black filled polymer composite detectors. However, the PEDOT−PSS composites produced smaller responses than carbon black composites when exposed to nonpolar analytes. The resolving power of a PEDOT−PSS detector array was compared to that of a carbon black composite array for a broadly construed set of organic vapors. The PEDOT−PSS array exhibited better, on average, discrimination between pairs of polar analytes and polar/nonpolar analytes than did the carbon black composite array. The carbon black composite array outperformed the PEDOT−PSS array in discriminating between nonpolar compounds. The addition of PEDOT−PSS composites to an array of carbon black composite detectors therefore can produce improved overall discrimination in a vapor sensor system when used in tasks to differentiate between of a broad set of analyte vapors.
机译:聚(3,4-乙撑二氧基)噻吩-聚苯乙烯磺酸盐(PEDOT-PSS)被用作化学上不同的绝缘聚合物基质中的导电成分,从而形成了一系列蒸汽探测器。与相应的炭黑填充聚合物复合材料检测器相比,此类复合材料在暴露于极性分析物时产生更大的相对差分电阻响应。但是,当暴露于非极性分析物时,PEDOT-PSS复合材料产生的响应比炭黑复合材料小。对于广泛理解的一组有机蒸气,将PEDOT-PSS检测器阵列的分辨能力与炭黑复合物阵列的分辨能力进行了比较。与炭黑复合材料阵列相比,PEDOT-PSS阵列在极性分析物对和极性/非极性分析物对之间表现出更好的区分度。在区分非极性化合物方面,炭黑复合材料阵列优于PEDOT-PSS阵列。因此,当将PEDOT-PSS复合材料添加到一系列炭黑复合材料检测器中时,可以在区分各种分析物蒸气的任务中使用,从而在蒸气传感器系统中产生更好的整体分辨力。

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