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Selective Detection of NO and NO2 with CNTs-Based Ionization Sensor Array

机译:基于CNTs的电离传感器阵列选择性检测NO和NO2

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摘要

The accurate detection of NOx is an important issue, because nitrogen oxides are not only environmental pollutants, but also harm to human health. An array composed of two carbon nanotubes (CNTs)-based ionization sensors with different separations is proposed for NO and NO2 selective detection. The experimental results indicate that the CNTs-based ionization sensor has an intrinsic, monotonically decreasing response to NO or NO2. The sensor with 80 µm separations and 100 µm separations exhibited the highest sensitivity of −0.11 nA/ppm to 300 ppm NO and −0.49 nA /ppm to 70 ppm NO2, respectively. Although the effect of the NO2 concentration on the NO response is much stronger than that of NO on NO2, the array of these two sensors still exhibits the ability to simultaneously detect the concentrations of NO and NO2 in a gas mixture without component separation.
机译:准确检测NOx是一个重要的问题,因为氮氧化物不仅是环境污染物,而且对人体健康也有害。提出了一种由两个具有不同间隔的基于碳纳米管的电离传感器组成的阵列,用于NO和NO2的选择性检测。实验结果表明,基于CNT的电离传感器具有固有的,对NO或NO2单调下降的响应。间隔为80 µm和间隔为100 µm的传感器表现出最高的灵敏度,分别为-0.11 nA / ppm至300 ppm NO和-0.49 nA / ppm至70 ppm NO2。尽管NO2浓度对NO响应的影响比NO对NO2的影响要强得多,但是这两个传感器的阵列仍具有同时检测气体混合物中NO和NO2浓度而无需组分分离的能力。

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