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NO2 Selective Sensor Based on α-Fe2O3 Nanoparticles Synthesized via Hydrothermal Technique

机译:水热法合成基于α-Fe2O3纳米颗粒的NO2选择传感器

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摘要

In the present work, hematite (α-Fe2O3) nanopowders were successfully prepared via a hydrothermal route. The morphology and microstructure of the synthesized nanopowders were analyzed by using scanning and transmission electron microscopy (SEM and TEM, respectively) analysis and X-ray diffraction. Gas sensing devices were fabricated by printing α-Fe2O3 nanopowders on alumina substrates provided with an interdigitated platinum electrode. To determine the sensor sensitivity toward NO2, one of the main environmental pollutants, tests with low concentrations of NO2 in air were carried out. The results of sensing tests performed at the operating temperature of 200 °C have shown that the α-Fe2O3 sensor exhibits p-type semiconductor behavior and high sensitivity. Further, the dynamics exhibited by the sensor are also very fast. Lastly, to determine the selectivity of the α-Fe2O3 sensor, it was tested toward different gases. The sensor displayed large selectivity to nitrogen dioxide, which can be attributed to larger affinity towards NO2 in comparison to other pollutant gases present in the environment, such as CO and CO2.
机译:在目前的工作中,通过水热法成功制备了赤铁矿(α-Fe2O3)纳米粉。使用扫描和透射电子显微镜(分别为SEM和TEM)分析和X射线衍射分析了合成的纳米粉的形貌和微观结构。通过在配备有叉指式铂电极的氧化铝基板上印刷α-Fe2O3纳米粉体来制造气体传感设备。为了确定传感器对主要环境污染物之一NO2的敏感度,在空气中低NO2浓度下进行了测试。在200°C的工作温度下进行的感测测试结果表明,α-Fe2O3传感器具有p型半导体性能和高灵敏度。此外,传感器表现出的动力学也非常快。最后,为了确定α-Fe2O3传感器的选择性,对不同气体进行了测试。该传感器显示出对二氧化氮的高选择性,这可以归因于与环境中存在的其他污染物气体(例如CO和CO2)相比,对NO2的亲和力更大。

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