首页> 美国卫生研究院文献>Sensors (Basel Switzerland) >A Study on the Impact of Poly(3-hexylthiophene) Chain Length and Other Applied Side-Chains on the NO2 Sensing Properties of Conducting Graft Copolymers
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A Study on the Impact of Poly(3-hexylthiophene) Chain Length and Other Applied Side-Chains on the NO2 Sensing Properties of Conducting Graft Copolymers

机译:聚(3-己基噻吩)链长及其他应用侧链对导电接枝共聚物NO2传感性能的影响研究

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摘要

The detection and concentration measurements of low concentrations of nitrogen dioxide (NO2) are important because of its negative effects on human health and its application in many fields of industry and safety systems. In our approach, conducting graft copolymers based on the poly(3-hexylthiophene) (P3HT) conducting polymer and other side-chains, polyethylene glycol (PEG) and dodec-1-en, grafted on a poly(methylhydrosiloxane) backbone, were investigated. The grafts containing PEG (PEGSil) and dodec-1-en (DodecSil) in two variants, namely, fractions with shorter (hexane fraction -H) and longer (chloroform fraction -CH) side-chains of P3HT, were tested as receptor structures in NO2 gas sensors. Their responses to NO2, within the concentration range of 1–20 ppm, were investigated in an nitrogen atmosphere at different operating temperatures—room temperature (RT) = 25 °C, 50 °C, and 100 °C. The results indicated that both of the copolymers with PEG side-chains had higher responses to NO2 than the materials with dodec-1-en side-chains. Furthermore, the results indicated that, in both cases, H fractions were more sensitive than CH fractions. The highest response to 1 ppm of NO2, from the investigated graft copolymers, had PEGSil H, which indicated a response of 1330% at RT and 1980% at 100 °C. The calculated lower-limit of the detection of this material is lower than 300 ppb of NO2 at 100 °C. This research indicated that graft copolymers of P3HT had great potential for low temperature NO2 sensing, and that the proper choice of other side-chains in graft copolymers can improve their gas sensing properties.
机译:低浓度二氧化氮(NO2)的检测和浓度测量非常重要,因为它会对人体健康产生负面影响,并在许多工业和安全系统领域中得到应用。在我们的方法中,研究了基于聚(3-己基噻吩)(P3HT)导电聚合物和其他侧链的导电接枝共聚物,聚乙二醇(PEG)和dodec-1-en,接枝到了聚(甲基氢硅氧烷)主链上。测试了两个变体中包含PEG(PEGSil)和dodec-1-en(DodecSil)的移植物,即P3HT的较短(己烷馏分-H)和较长(氯仿馏分-CH)侧链的馏分作为受体结构在NO2气体传感器中。在氮气氛下,在不同的工作温度(室温(RT)= 25°C,50°C和100°C)下,研究了它们对1-20 ppm浓度范围内的NO2的响应。结果表明,两种带有PEG侧链的共聚物对NO2的响应均高于带有dodec-1-en侧链的材料。此外,结果表明,在两种情况下,H馏分均比CH馏分敏感。研究的接枝共聚物对1 ppm NO2的最高响应为PEGSil H,这表明RT响应为1330%,100°C为1980%。计算出的该物质的检测下限低于100℃下300 ppb的NO2。这项研究表明,P3HT的接枝共聚物具有低温NO2感测的巨大潜力,并且在接枝共聚物中适当选择其他侧链可以改善其气敏特性。

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