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Novel composite organic–inorganic semiconductor sensors for the quantitative detection of target organic vapours

机译:新型复合有机-无机半导体传感器,用于目标有机蒸气的定量检测

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摘要

Composites of tin dioxide (an n-type semiconductor) and derivatives of the conducting polymer polypyrrole (a p-type semiconductor) gave reversible changes in electrical resistance at room temperature when exposed to a range of organic vapours. The optimum amount of polymer giving highest sensitivity was found by experiment to be 2.5% by mass for the polypyrrole chloride-tin dioxide composite. Composites containing 2.5% polymer by mass but differing in polymer derivative, were fabricated and exposed to low concentrations of ethanol, methanol, acetone, methyl acetate and ethyl acetate. All were found to give significant and reversible decreases in electrical resistance. Direct comparison with sensors constructed solely of tin dioxide or polypyrrole at room temperature showed the composites to be more sensitive. The gas sensitivity of the composite materials depended on the type of polymer derivative incorporated and the dopant anion associated with the polymer. The composites were simple to fabricate and gave differing response profiles to a range of organic vapours.
机译:当暴露于一定范围的有机蒸汽中时,二氧化锡(一种n型半导体)和导电聚合物聚吡咯(一种p型半导体)的衍生物的复合物在室温下产生可逆的电阻变化。通过实验发现对于聚吡咯氯化物-二氧化锡复合物,给出最高灵敏度的最佳聚合物量为2.5质量%。制备包含按质量计2.5%的聚合物但聚合物衍生物不同的复合材料,并将其暴露于低浓度的乙醇,甲醇,丙酮,乙酸甲酯和乙酸乙酯中。发现所有这些都使电阻显着且可逆地降低。与仅由二氧化锡或聚吡咯构成的传感器在室温下的直接比较表明,复合材料更敏感。复合材料的气体敏感性取决于所掺入的聚合物衍生物的类型以及与聚合物相关的掺杂剂阴离子。该复合材料易于制造,并且对一系列有机蒸气具有不同的响应曲线。

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