首页> 外文会议>Electrical Engineering/Electronics, Computer, Telecommunications and Information Technology (ECTI-CON), 2012 9th International Conference on >All inkjet-printed chemical gas sensors based on CNT/polymer nanocomposites: Comparison between double printed layers and blended single layer
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All inkjet-printed chemical gas sensors based on CNT/polymer nanocomposites: Comparison between double printed layers and blended single layer

机译:所有基于CNT /聚合物纳米复合材料的喷墨印刷化学气体传感器:双印刷层和混合单层之间的比较

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Gas sensors based on carbon nanotube (CNT)/ polymer nanocomposite were fabricated by a fully inkjet-printing method. The CNT/polymer layers acting as sensing layer were prepared by 2 methods; (i) deposition of separated layer of CNT and polymer to form a composite-like structure at the interface and (ii) deposition of blend CNT and polymer to obtain completely composite layer. Difference of sensor responses was demonstrated. We have found that the sensor with a compositelike layer provides a good response to volatile organic compounds (VOCs) as compared to the sensor obtained from printing CNT/polymer composite. The results have also demonstrated that the capability of the CNT/polymer composite sensor allows detecting VOCs in broad range of concentration.
机译:通过完全喷墨打印方法制造了基于碳纳米管(CNT)/聚合物纳米复合材料的气体传感器。通过两种方法制备用作感测层的CNT /聚合物层。 (i)沉积分离的CNT和聚合物层以在界面处形成类似复合的结构,以及(ii)沉积CNT和聚合物的共混物以获得完全复合的层。证明了传感器响应的差异。我们已经发现,与从印刷CNT /聚合物复合材料获得的传感器相比,具有类似复合材料层的传感器对挥发性有机化合物(VOC)的响应良好。结果还表明,CNT /聚合物复合传感器的功能允许在宽浓度范围内检测VOC。

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