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Array-based vapor sensing using chemically sensitive, polymer composite resistors

机译:使用化学敏感的聚合物复合电阻器进行基于阵列的蒸汽感测

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摘要

We describe herein the construction of simple, low-power, broadly responsive vapor sensors. Insulating polymer-conductor composites have been shown to swell reversibly upon exposure to vapors. Thin films of polymer composites have been deposited across two metallic leads, with swelling-induced resistance changes of the films signaling the presence of vapors. To identify and classify vapors, arrays of such vapor-sensing elements have been constructed, with each element containing either carbon black or poly(pyrrole) as the conducting phase mixed with one of several different organic polymers as the insulating phase. A convenient chemical polymerization of poly(pyrrole) which allows a high degree of processibility is also described. The differing gas-solid partition coefficients for the various polymers of the sensor array produce a pattern of resistance changes that can be used to classify vapors and vapor mixtures. This type of sensor array has been shown to resolve common organic solvents, including molecules of different classes (such as aromatics from alcohols) as well as those within a particular class (such as benzene from toluene and methanol from ethanol). The response of an individual composite to varying concentrations of solvent is shown to be consistent with the predictions of percolation theory. Accordingly, significant increases in the signals of array elements have been observed for carbon black-polymer composites that were operated near their percolation thresholds.
机译:我们在本文中描述了简单,低功耗,响应广泛的蒸汽传感器的结构。已经显示出绝缘的聚合物-导体复合材料在暴露于蒸气时可逆膨胀。聚合物复合材料的薄膜已沉积在两条金属引线之间,薄膜的溶胀诱导电阻变化表明存在蒸汽。为了识别和分类蒸气,已经构造了这样的蒸气感测元件的阵列,其中每个元件包含炭黑或聚(吡咯)作为导电相并与几种不同的有机聚合物之一混合作为绝缘相。还描述了允许高度可加工性的方便的聚吡咯化学聚合。传感器阵列的各种聚合物的气固分配系数不同,会产生电阻变化模式,可用于对蒸气和蒸气混合物进行分类。这种类型的传感器阵列已显示出可以解析常见的有机溶剂,包括不同种类的分子(例如来自醇的芳香族化合物)以及特定类别内的分子(例如来自甲苯的苯和来自乙醇的甲醇)。单个复合材料对不同浓度溶剂的响应显示与渗滤理论的预测一致。因此,已经观察到在其渗透阈值附近操作的炭黑-聚合物复合材料的阵列元件的信号显着增加。

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