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首页> 外文期刊>ACS applied materials & interfaces >Gas Selectivity Control in Co3O4 Sensor via Concurrent Tuning of Gas Reforming and Gas Filtering using Nanoscale Hetero-Overlayer of Catalytic Oxides
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Gas Selectivity Control in Co3O4 Sensor via Concurrent Tuning of Gas Reforming and Gas Filtering using Nanoscale Hetero-Overlayer of Catalytic Oxides

机译:通过纳米级杂覆催化氧化物的纳米级杂覆层和气体过滤的同时调谐Co3O4传感器中的气体选择性控制

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摘要

Co3O4 sensors with a nanoscale TiO2 or SnO2 catalytic overlayer were prepared by screen-printing of Co3O4 yolk shell spheres and subsequent e-beam evaporation of TiO2 and SnO2. The Co3O4 sensors with 5 nm thick TiO2 and SnO2 overlayers showed high responses (resistance ratios) to 5 ppm xylene (14.5 and 28.8) and toluene (11.7 and 16.2) at 250 degrees C with negligible responses to interference gases such as ethanol, HCHO, CO, and benzene. In contrast, the pure Co3O4 sensor did not show remarkable selectivity toward any specific gas. The response and selectivity to methylbenzenes and ethanol could be systematically controlled by selecting the catalytic overlayer material, varying the overlayer thickness, and tuning the sensing temperature. The significant enhancement of the selectivity for xylene and toluene was attributed to the reforming of less reactive methylbenzenes into more reactive and smaller species and oxidative filtering of other interference gases, including ubiquitous ethanol. The concurrent control of the gas reforming and oxidative filtering processes using a nanoscale overlayer of catalytic oxides provides a new, general, and powerful tool for designing highly selective and sensitive oxide semiconductor gas sensors.
机译:通过CO 3 O 4蛋黄球体的丝网印刷制备具有纳米级TiO2或SnO2催化重叠层的CO3O4传感器,然后通过TiO 2和SnO2的随后的电子束蒸发制备。具有5nm厚TiO 2和SnO2叠层的CO3O4传感器显示出高响应(电阻比)至5ppm二甲苯(14.5和28.8)和甲苯(11.7和16.2),在250摄氏度下,对干涉气体如乙醇,Hcho, CO,和苯。相比之下,纯CO3O4传感器对任何特定气体没有显示出显着的选择性。通过选择催化重叠材料,改变重叠层厚度,可以系统地控制对甲基苯和乙醇的反应和选择性,并调节感测温度。二甲苯和甲苯的选择性的显着提高归因于较少反应性甲基苯的重整为更具反应性和较小的物种以及其他干涉气体的氧化过滤,包括普遍存在的乙醇。使用催化氧化物纳米级覆盖器的气体重整和氧化过滤过程的同时控制提供了一种用于设计高选择性和敏感的氧化物半导体气体传感器的新型,一般,强大的工具。

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