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Morphology, Structure, and Gas Sensing Performance of Conductive Polymers and Polymer/Carbon Black Composites Used for Volatile Compounds Detection

机译:用于挥发性化合物检测的导电聚合物和聚合物/炭黑复合材料的形态,结构和气敏性能

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In this paper, we present fabrication, characterization, and sensing performance of four sensor elements, including two conducting polymers (polypyrrole and polyaniline), and two polymer/carbon black (CB) composites consisting ethyl cellulose (EC) and poly(caprolactone) (PCL). The identifications of four different vapors (methanol, ethanol, acetone, and ammonia) by these four sensors have been successfully demonstrated by using the principal component analysis. The sensing mechanisms of the examined sensors were investigated and a discussion on the similarity of gas sensor responses and the creep behavior has also been given. It was found that the response/recovery behavior of gas sensors can be presented by the Kelvin-Voigt rheological model. The effect of CB content on polymer/carbon sensor performance was investigated in the range of 15-20 wt. %. The increase of CB wt. %, led to increase the sensor response. The morphology of the produced EC/CB and PCL/CB composite sensors has been characterized by scanning electron microscopy and atomic force microscopy. Polyaniline indicated the highest response to ammonia due to effect of p-phenylene resonance on deprotonation process. The PCL/CB sensor response was more pronounced as compared with EC/CB, due to its higher porous structure.
机译:在本文中,我们介绍了四种传感器元件的制造,表征和传感性能,包括两种导电聚合物(聚吡咯和聚苯胺)以及两种由乙基纤维素(EC)和聚己内酯组成的聚合物/炭黑(CB)复合材料( PCL)。通过使用主成分分析已成功证明了这四个传感器对四种不同蒸气(甲醇,乙醇,丙酮和氨)的识别。研究了被检查传感器的传感机制,并对气体传感器响应和蠕变行为的相似性进行了讨论。已经发现,气体传感器的响应/恢复行为可以用开尔文-沃伊特流变模型表示。在15至20 wt。%的范围内研究了CB含量对聚合物/碳传感器性能的影响。 %。炭黑重量的增加%,导致传感器响应提高。所产生的EC / CB和PCL / CB复合传感器的形态已通过扫描电子显微镜和原子力显微镜进行了表征。由于对苯撑共振对去质子化过程的影响,聚苯胺显示出对氨的最高响应。由于其较高的多孔结构,与EC / CB相比,PCL / CB传感器的响应更加明显。

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