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On the Sensing Mechanism in Carbon Nanotube Chemiresistors

机译:碳纳米管化学传感器的传感机理

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There has been recent controversy whether the response seen in carbon nanotube (CNT) chemiresistors is associated with a change in the resistance of the individual nanotubes or changes in the resistance of the junctions. In this study, we carry out a network analysis to understand the relative contributions of the nanotubes and the junctions to the change in resistance of the nanotube network. We find that the dominant mode of detection in nanotube networks changes according to the conductance level (defect level) in the nanotubes. In networks with perfect nanotubes, changes in the junctions between adjacent nanotubes and junctions between the contacts and the CNTs can cause a detectable change in the resistance of the nanotube networks, while adsorption on the nanotubes has a smaller effect. In contrast, in networks with highly defective nanotubes, the changes in the resistance of the individual nanotubes cause a detectable change in the overall resistance of a chemiresistor network, while changes in the junctions have smaller effects. The combinational effect is also observed for the case in between. The results show that the sensing mechanism of a nanotube network can change according to the defect levels of the nanotubes, which may explain the apparently contradictory results in the literature.
机译:近年来,在碳纳米管(CNT)化学电阻中看到的响应与单个纳米管的电阻变化还是结的电阻变化相关,一直存在争议。在这项研究中,我们进行网络分析以了解纳米管和结对纳米管网络电阻变化的相对贡献。我们发现,纳米管网络中的主要检测模式根据纳米管中的电导水平(缺陷水平)而变化。在具有完美纳米管的网络中,相邻纳米管之间的结以及触点与CNT之间的结的变化会导致纳米管网络电阻的可检测变化,而纳米管上的吸附作用较小。相反,在具有高度缺陷的纳米管的网络中,单个纳米管的电阻变化会导致化学电阻器网络的整体电阻发生可检测的变化,而结的变化影响较小。在两者之间的情况下也观察到组合效果。结果表明,纳米管网络的传感机制可以根据纳米管的缺陷水平而改变,这可以解释文献中明显矛盾的结果。

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