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首页> 外文期刊>IEEE transactions on nanotechnology >Chemical sensing with ZnO nanowire field-effect transistor
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Chemical sensing with ZnO nanowire field-effect transistor

机译:ZnO纳米线场效应晶体管的化学传感

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摘要

Zinc oxide nanowires are configured as n-channel FETs. These transistors are implemented as chemical sensors for detection of various chemical gases. It is observed that the nanowire conductance is reduced when it is exposed to oxygen, nitrogen dioxide, ammonia gases at room temperature. Its ammonia sensing behavior is observed to switch from oxidizing to reducing when temperature is increased to 500 K. This effect is mainly attributed to the temperature dependent Fermi level shift. In addition, carbon monoxide is found to increase the nanowire conductance in the presence of oxygen. Furthermore, the detection sensitivity dependence on the nanowire radius is presented.
机译:氧化锌纳米线被配置为n沟道FET。这些晶体管被实现为用于检测各种化学气体的化学传感器。据观察,当纳米线在室温下暴露于氧气,二氧化氮,氨气时,其电导率降低。当温度升高至500 K时,观察到其氨感测行为从氧化切换为还原。此效应主要归因于温度相关的费米能级移动。另外,发现一氧化碳在氧存在下增加纳米线电导。此外,提出了检测灵敏度对纳米线半径的依赖性。

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