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Optimized network of multi-walled carbon nanotubes for chemical sensing

机译:用于化学传感的优化的多壁碳纳米管网络

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This work reports the design of a resistive gas sensor based on 2D mats of multi-walled carbon nanotubes (MWCNTs) grown by aerosol-assisted chemical vapour deposition. The sensor sensitivity was optimized using chlorine as analyte by tuning both CNT network morphology and CNT electronic properties. Optimized devices, operating at room temperature, have been calibrated over a large range of concentration and are shown to be sensitive down to 27 ppb of chlorine. The as-grown MWCNT response is compared with responses of 2000 °C annealed CNTs, as well as of nitrogen-doped CNTs and CNTs functionalized with polyethyleneimine (PEI). Under chlorine exposure, the resistance decrease of as-grown and annealed CNTs is attributed to charge transfer from chlorine to CNTs and demonstrates their p-type semiconductor behaviour. XPS analysis of CNTs exposed to chlorine shows the presence of chloride species that confirms electron charge transfer from chlorine to CNTs. By contrast, the resistance of nitrogen-doped and PEI functionalized CNTs exposed to chlorine increases, in agreement with their n-type semiconductor nature. The best response is obtained using annealed CNTs and is attributed to their higher degree of crystallinity.
机译:这项工作报告了一种基于气溶胶辅助化学气相沉积生长的多壁碳纳米管(MWCNT)二维垫的电阻式气体传感器的设计。使用氯作为分析物通过同时调整CNT网络形态和CNT电子性能来优化传感器灵敏度。经过优化的设备在室温下运行,已在很大的浓度范围内进行了校准,并显示出对低至27 ppb的氯敏感。将生长的MWCNT响应与2000°C退火的CNT以及氮掺杂的CNT和用聚乙烯亚胺(PEI)功能化的CNT的响应进行比较。在暴露于氯气下,生长和退火后的碳纳米管的电阻降低归因于电荷从氯转移到碳纳米管,并证明了它们的p型半导体性能。对暴露于氯中的CNT的XPS分析表明,存在氯化物,这证实了电子电荷从氯转移至CNT。相比之下,氮掺杂和PEI官能化的CNT暴露于氯气的电阻增加,与其n型半导体性质一致。使用退火的CNT可获得最佳响应,这归因于其较高的结晶度。

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