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Selective Detection of Nitrogen-Containing Compound Gases

机译:选择性检测含氮化合物气体

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摘要

N-containing gaseous compounds, such as trimethylamine (TMA), triethylamine (TEA), ammonia (NH3), nitrogen monoxide (NO), and nitrogen dioxide (NO2) exude irritating odors and are harmful to the human respiratory system at high concentrations. In this study, we investigated the sensing responses of five sensor materials—Al-doped ZnO (AZO) nanoparticles (NPs), Pt-loaded AZO NPs, a Pt-loaded WO3 (Pt-WO3) thin film, an Au-loaded WO3 (Au-WO3) thin film, and N-doped graphene—to the five aforementioned gases at a concentration of 10 parts per million (ppm). The ZnO- and WO3-based materials exhibited n-type semiconducting behavior, and their responses to tertiary amines were significantly higher than those of nitric oxides. The N-doped graphene exhibited p-type semiconducting behavior and responded only to nitric oxides. The Au- and Pt-WO3 thin films exhibited extremely high responses of approximately 100,000 for 10 ppm of triethylamine (TEA) and approximately −2700 for 10 ppm of NO2, respectively. These sensing responses are superior to those of previously reported sensors based on semiconducting metal oxides. On the basis of the sensing response results, we drew radar plots, which indicated that selective pattern recognition could be achieved by using the five sensing materials together. Thus, we demonstrated the possibility to distinguish each type of gas by applying the patterns to recognition techniques.
机译:三甲胺(TMA),三乙胺(TEA),氨(NH3),一氧化氮(NO)和二氧化氮(NO2)等含氮气体化合物会散发出刺激性气味,并在高浓度下对人体呼吸系统有害。在这项研究中,我们研究了五种传感器材料的传感响应:掺铝的ZnO(AZO)纳米颗粒(NPs),载有Pt的AZO NP,载有Pt的WO3(Pt-WO3)薄膜,载有Au的WO3 (Au-WO3)薄膜和N掺杂石墨烯-浓度为百万分之10(ppm)的上述五种气体。 ZnO和WO3基材料表现出n型半导体行为,并且它们对叔胺的反应明显高于一氧化氮。 N掺杂的石墨烯表现出p型半导体行为,仅对一氧化氮响应。 Au和Pt-WO3薄膜对10 ppm三乙胺(TEA)分别显示出约100,000的极高响应,对10 ppm NO2则显示出约-2700的极高响应。这些感测响应优于先前报道的基于半导体金属氧化物的传感器。根据感测响应结果,我们绘制了雷达图,表明通过同时使用五种感测材料可以实现选择性模式识别。因此,我们证明了通过将模式应用于识别技术来区分每种气体的可能性。

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