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Room temperature conductometric gas sensors based on metal oxide nanowires and nanocrystals

机译:基于金属氧化物纳米线和纳米晶体的室温电导气体传感器

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The conductometric response of metal oxide nanowires and nanocrystals to oxidizing molecules at room temperature and under UV illumination is studied. We demonstrate that UV illumination induces an electron-hole pair generation as well as a surface oxygen's desorption leading to a reduced surface that is highly reactive to oxidizing species. Based on these mechanisms, we present room temperature conductometric sensors based on nanoparticles and nanowires. The electrical response of these devices under different illumination conditions is theoretically modeled and predicted. The interfering effect of other gases, such as humidity, is also analyzed.
机译:研究了金属氧化物纳米线和纳米晶体在室温下氧化分子的电导反应响应,并在UV照射下进行氧化。我们证明UV照明诱导电子 - 孔对等一致,以及表面氧的解吸,导致对氧化物质具有高反应性的降低表面。基于这些机制,我们基于纳米颗粒和纳米线提供室温传感器。在理论上建模和预测这些装置在不同照明条件下的电气响应。还分析了其他气体(例如湿度)的干扰效果。

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