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Switchable changes in the conductance of single-walled carbon nanotube networks on exposure to water vapour

机译:可切换的电导的变化单壁碳纳米管网络暴露在水蒸气

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摘要

We have discovered that wrapping single-walled carbon nanotubes (SWCNTs) with ionic surfactants induces a switch in the conductance-humidity behaviour of SWCNT networks. Residual cationic vs. anionic surfactant induces a respective increase or decrease in the measured conductance across the SWCNT networks when exposed to water vapour. The magnitude of this effect was found to be dependent on the thickness of the deposited SWCNT films. Previously, chemical sensors, field effect transistors (FETs) and transparent conductive films (TCFs) have been fabricated from aqueous dispersions of surfactant functionalised SWCNTs. The results reported here confirm that the electrical properties of such components, based on randomly orientated SWCNT networks, can be significantly altered by the presence of surfactant in the SWCNT layer. A mechanism for the observed behaviour is proposed based on electrical measurements, Raman and UV-Vis-NIR spectroscopy. Additionally, the potential for manipulating the sensitivity of the surfactant functionalised SWCNTs to water vapour for atmospheric humidity sensing was evaluated. The study also presents a simple method to establish the effectiveness of surfactant removal techniques, and highlights the importance of characterising the electrical properties of SWCNT-based devices in both dry and humid operating environments for practical applications.
机译:我们发现包装单壁碳纳米管(SWCNTs)与离子表面活性剂conductance-humidity诱发一个开关SWCNT网络的行为。与阴离子表面活性剂产生各自的测量电导的增加或减少SWCNT网络暴露在水蒸汽。取决于沉积的厚度SWCNT电影。效应晶体管(场效应晶体管)和透明导电薄膜(tcf)捏造表面活性剂functionalised的水性分散体SWCNTs。这些部件的电气性能,基于随机导向SWCNT网络,可以由存在的显著改变表面活性剂在SWCNT层。提出了基于观察到的行为电气测量、拉曼和UV-Vis-NIR光谱学。操纵表面活性剂的敏感性functionalised SWCNTs水蒸气大气湿度传感是评估。研究还提出了一种简单的方法来建立表面活性剂去除的有效性技术和突出的重要性描述的电气性能SWCNT-based设备在干燥和潮湿实际的操作环境应用程序。

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