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首页> 外文期刊>Materials science-Poland: An interdisciplinary journal of physics, chemistry and technology of materials >Detection of organic chemical vapors with a MWNTs-polymer array chemiresistive sensor
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Detection of organic chemical vapors with a MWNTs-polymer array chemiresistive sensor

机译:MWNTs-聚合物阵列化学阻性传感器检测有机化学蒸气

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摘要

Organic chemical hazardous gases pose a significant threat to human life and the environment. An urgent need exists for the development of reliable chemical sensors that would be able to identify these hazardous gases. In a recent study, conductive carbon nanotubes were mixed with six polymers with various chemical adsorption properties to produce a composite thin film for the fabrication of a chemical sensor array. A silicon wafer was used as a microelectrode substrate for a resistance sensor fabricated using a typical semiconductor manufacturing process. This sensor array was then used to identify hazardous chemical gases at various temperatures. Results for two hazardous gases, ammonia (NH3) and chloroform (CHCl3), tested with the six polymers at different temperatures, indicated that the variation in sensitivity/resistance increased when the temperature increased. It was found that the MWNTs-PVP and MWNTs-PMVEMA sensing films had high sensitivity, excellent selectivity, and favorable reproducibility in detecting the two chemical agent vapors. In addition, we derived the solubility parameter (Δδ) to demonstrate the sensitivity of the polymers to ammonia (NH3). The results showed that smaller solubility parameter corresponds to a stronger interaction between NH3 gas and polymers, and increased sensitivity. Additionally, we used the statistical methods of principal component analysis to identify the interaction of hazardous gases with the MWNTs-polymer sensor.
机译:有机化学有害气体对人类生命和环境构成重大威胁。迫切需要开发能够识别这些有害气体的可靠化学传感器。在最近的一项研究中,将导电碳纳米管与六种具有各种化学吸附特性的聚合物混合,以生产用于制造化学传感器阵列的复合薄膜。硅晶片用作通过典型的半导体制造工艺制造的电阻传感器的微电极基板。然后,该传感器阵列用于识别各种温度下的有害化学气体。用六种聚合物在不同温度下测试的两种有害气体氨(NH3)和氯仿(CHCl3)的结果表明,随着温度的升高,灵敏度/电阻的变化也随之增加。结果发现,MWNTs-PVP和MWNTs-PMVEMA传感膜在检测两种化学试剂蒸气时具有高灵敏度,优异的选择性和良好的重现性。此外,我们得出了溶解度参数(Δδ),以证明聚合物对氨(NH3)的敏感性。结果表明,较小的溶解度参数对应于NH3气体与聚合物之间的较强相互作用,并增加了灵敏度。此外,我们使用主成分分析的统计方法来确定有害气体与MWNTs-聚合物传感器之间的相互作用。

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