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Carbon Nanomaterial Polymer Composite ChemFET and Chemoresistors For Vapour Sensing

机译:碳纳米材料聚合物复合化学电气和化学电阻器用于蒸汽传感

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Carbon nanotubes (CNTs) have been proposed for a broad spectrum of applications, including chemical sensing. Here we report on an investigation of multi-walled CNTs (MWCNTs) as conductive filler for composite polymer sensing films. Such materials combine conductive fillers with an insulating polymer to produce a chemically sensitive, electrically conducting material. These polymer composites offer several important advantages for chemical sensing, including room temperature operation (hence ultra low power), a broad range of selectivities (due to the wide choice of available polymers), and low manufacturing cost. Our approach is to compare the sensing qualities of these composite films, in resistive and field-effect configurations, with existing carbon black polymer composites. Their responses to propanol and toluene vapour in air show that the carbon black resistive sensors outperform CNT sensors by a factor of four in response magnitude. Thus we conclude that for these vapours and using this sensor fabrication method, carbon black polymer composite films are preferable for chemical sensing than MWCNT polymer composites.
机译:已提出碳纳米管(CNT)用于广谱应用,包括化学感测。在这里,我们报告了复合聚合物传感膜的多壁CNT(MWCNT)作为导电填料的研究。这种材料将导电填料与绝缘聚合物组合以产生化学敏感的导电材料。这些聚合物复合材料提供了化学传感的几个重要优势,包括室温操作(因此超低功率),广泛的选择性(由于可用聚合物的广泛选择),以及低制造成本。我们的方法是将这些复合膜,电阻和场效应构型配置的传感品质进行比较,具有现有的炭黑聚合物复合材料。它们对空气中对丙醇和甲苯蒸气的反应表明,炭黑电阻传感器在响应幅度下以四倍偏出CNT传感器。因此,我们得出结论,对于这些蒸汽并使用该传感器制造方法,炭黑聚合物复合膜优选比MWCNT聚合物复合材料的化学感测。

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