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首页> 外文期刊>Nanotechnology >Gas sensing at the nanoscale: engineering SWCNT-ITO nano-heterojunctions for the selective detection of NH3 and NO2 target molecules
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Gas sensing at the nanoscale: engineering SWCNT-ITO nano-heterojunctions for the selective detection of NH3 and NO2 target molecules

机译:纳米级气体感应:工程SWCNT-ITO纳米杂交功能,用于选择性检测NH3和NO2靶分子

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摘要

The gas response of single-wall carbon nanotubes (SWCNT) functionalized with indium tin oxide (ITO) nanoparticles (NP) has been studied at room temperature and an enhanced sensitivity to ammonia and nitrogen dioxide is demonstrated. The higher sensitivity in the functionalized sample is related to the creation of nano-heterojunctions at the interface between SWCNT bundles and ITO NP. Furthermore, the different response of the two devices upon NO2 exposure provides a way to enhance also the selectivity. This behavior is rationalized by considering a gas sensing mechanism based on the build-up of space-charge layers at the junctions. Finally, full recovery of the signal after exposure to NO2 is achieved by UV irradiation for the functionalized sample, where the ITO NP can play a role to hinder the poisoning effects on SWCNT due to NO2 chemisorption.
机译:在室温下研究了用氧化铟锡(ITO)纳米颗粒(NP)官能化的单壁碳纳米管(SWCNT)的气体响应,并证明了对氨和二氧化氮的增强敏感性。 功能化样本中的较高灵敏度与在SWCNT捆绑和ITO NP之间的界面处的纳米异质功能的创建有关。 此外,在No2曝光时,两个设备的不同响应提供了一种增强选择性的方法。 通过考虑基于交叉点的空间电荷层的积聚来考虑气体传感机制,该行为是合理的。 最后,通过UV照射在官能化样品暴露于NO 2后的全面恢复,其中ITO NP可以发挥作用,以阻碍由于NO2的化学吸附而对SWCNT的中毒作用进行起作用。

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