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ZnO Nanocluster-Functionalized Single-Walled CarbonNanotubes Synthesized by Microwave Irradiation for Highly SensitiveNO2 Detection at Room Temperature

机译:ZnO纳米簇功能化单壁碳微波辐射合成纳米管的高灵敏度室温下的NO2检测

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摘要

To improve the NO2-sensing performance of single-walled carbon nanotube (SWCNT)-based sensors, zinc oxide (ZnO) nanoclusters (NCs) were functionalized by a microwave (MW)-assisted synthesis technique. Gas sensors based on pristine SWCNTs and ZnO NC–SWCNT composites synthesized using different weight ratios (ZnO/SWCNTs = 0.5:1, 1:1, 2:1, and 3:1) were fabricated, and their ability to sense various gases at room temperature (25 °C) was investigated. The results showed that the sensing performance of the ZnO NC–SWCNT composite synthesized with a weight ratio of 1:1 (denoted as Z-SWCNTs) was significantly enhanced with respect to NO2 response and selectivity. This enhanced sensing performance is thought to be a result of both the modulation of the conduction channel at the ZnO NC–SWCNT heterointerfaces and the generation of defects (or holes) by MW irradiation that act as active sites for the target gases. The results obtained in this work provide not only a facile method of cofunctionalizing oxide NCs and defects but also a new methodology for improving thesensing capabilities of SWCNT-based gas sensors.
机译:为了提高基于单壁碳纳米管(SWCNT)的传感器的NO2传感性能,通过微波(MW)辅助合成技术对氧化锌(ZnO)纳米簇(NC)进行了功能化。制作了基于原始SWCNT和ZnO NC-SWCNT复合材料的气体传感器,该复合材料使用不同的重量比(ZnO / SWCNT = 0.5:1、1:1、2:1和3:1)合成,并具有在200℃下感测各种气体的能力。研究了室温(25°C)。结果表明,以1:1重量比合成的ZnO NC-SWCNT复合材料(称为Z-SWCNTs)的传感性能在NO2响应和选择性方面得到了显着提高。这种增强的传感性能被认为是由于ZnO NC–SWCNT异质界面上的传导通道受到调制,以及由于MW辐射(作为目标气体的活性部位)而产生的缺陷(或空穴)的结果。在这项工作中获得的结果不仅提供了一种简便的将氧化物NC和缺陷共官能化的方法,而且还提供了一种新的方法来改善碳纳米管和缺陷。基于SWCNT的气体传感器的传感功能。

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