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Evidence of the self-heating effect on surface reactivity and gas sensing of metal oxide nanowire chemiresistors

机译:自热效应对金属氧化物纳米线化学电阻的表面反应性和气体感测的证据

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摘要

The effect of Joule self-heating of the semiconducting metal oxide nanowire (here (and below unless specified), due to the generality of the effect, we use the term 'nanowire' without specification as to whether the nanobelt or other class of quasi-1D nanostructure is considered) conductometric gas sensor on its surface reactivity and kinetics is demonstrated. Due to small thermal capacitance and hampered thermal losses from the nanowire to its surroundings, the sensor was able to operate without a heater, consuming only a few microwatts of power. These results demonstrate the importance of the self-heating effect in nanowire electronics and its potential use in chemical and bio-sensing, where the ultra-small size of the active element and minimal power consumption are crucial.
机译:半导体金属氧化物纳米线的焦耳自热效应(此处(及以下内容,除非特别说明)),由于这种效应的普遍性,我们使用术语“纳米线”,但未对纳米带或其他类别的准纳米带进行规范。一维纳米结构被认为)电导气体传感器的表面反应性和动力学得到了证明。由于较小的热电容和受阻的纳米线到周围环境的热损失,该传感器无需加热器即可工作,仅消耗几微瓦的功率。这些结果证明了自发热效应在纳米线电子学中的重要性及其在化学和生物传感中的潜在用途,其中有源元件的超小尺寸和最小的功耗至关重要。

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