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首页> 外文期刊>Nanoscale >Role of the heterojunctions in In2O3-composite SnO2 nanorod sensors and their remarkable gas-sensing performance for NOx at room temperature
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Role of the heterojunctions in In2O3-composite SnO2 nanorod sensors and their remarkable gas-sensing performance for NOx at room temperature

机译:In2O3-composite垂直的角色SnO2奈米棒传感器及其非凡的气敏性能对氮氧化物的房间温度

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Establishing heterostructures, as a good strategy to improve gas sensing performance, has been studied extensively. In this research, In2O3-composite SnO2 nanorod (ICTOs) heterostructures have been prepared via electrospinning, followed by calcination. It is found that In2O3 can improve the carrier density and oxygen deficiency of SnO2. In particular, the 3ICTO (Sn : In atom ratio of 25 : 0.3) nanorods with special particle distributions show an excellent sensing response towards different concentrations of NOx at room temperature. The highest sensing response is up to 8.98 for 100 ppm NOx with a fast response time of 4.67 s, which is over 11 times higher than that of pristine SnO2 nanorods at room temperature and the lowest detection limit is down to 0.1 ppm. More significantly, it presents good stability after 30 days for NOx of low concentration (0.1 ppm and 0.5 ppm). In addition, the rational band structure model combined with the surface depletion model which describe the NOx gas sensing mechanism of 3ICTO are presented. The 3ICTO nanorods may be promising in the application of gas sensors.
机译:建立异质结构,作为一个好策略提高气体传感性能,广泛的研究。In2O3-composite SnO2奈米棒(ICTOs)已经准备通过异质结构电纺的,其次是煅烧。发现研究可以提高载体密度和SnO2缺氧。3 icto (Sn:在原子比25:0.3)纳米棒有特殊粒子分布显示对不同的传感响应在室温下氮氧化物的浓度。最高的传感响应是100年的8.98ppm氮氧化物与快速响应时间为4.67秒,这是11倍以上原始SnO2纳米棒在室温和最低检出限是0.1 ppm。更重要的是,它提供了良好的稳定性30天后氮氧化物的低浓度(0.1ppm和0.5 ppm)。结构模型结合表面损耗模型,描述了氮氧化物气体3 icto传感机制。3 icto纳米棒可能是有前途的气体传感器的应用。

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