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Chemical Sensing with ZnO Nanowires

机译:用ZnO纳米线进行化学感应

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Zinc oxide nanowires were configured as n-channel field-effect transistors. These transistors were implemented as chemical sensors for detection of various gases. The ammonia sensing behavior of nanowires was observed to switch from oxidizing to reducing when temperature increased from 300 to 500 K. This effect is attributed to the temperature dependent chemical potential shift. Carbon monoxide was found to increase the nanowire conductance in the presence of oxygen. In addition, nanowire detection sensitivity dependence on the diameter was investigated.
机译:氧化锌纳米线被配置为N沟道场效应晶体管。这些晶体管被实现为用于检测各种气体的化学传感器。观察纳米线的氨感测量行为以从氧化切换到减少时,当温度从300增加到500k时,这种效果归因于温度依赖性化学势移位。发现一氧化碳在氧气存在下增加纳米线传导。此外,研究了纳米线检测敏感性对直径的依赖性。

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