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Sensing properties of different classes of gases based on the nanowire-electrode junction barrier modulation

机译:不同种类的气体传感性能基于nanowire-electrode结势垒调制

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The role of contact between semiconducting nanowire and metal electrodes in a single nanowire field effect transistor (NW-FET) is investigated for the sensing of different type of gases. Two different types of In2O3 nanowire devices, namely; Schottky contact device (SCD) and Ohmic contact device (OCD) are evaluated. SCD has shown a superior response to the reducing gas (CO) compared to oxidizing gas (NO), while OCD has shown high sensitivity towards oxidizing gas (NO) compared to the reducing gas (CO) under similar working conditions. The sensing mechanism is dominated by the contact resistance at the metal-semiconductor junction in SCD and the change in nanowire channel conductance dominates in OCD. The Schottky barrier height (SBH) was extracted using low temperature current voltage measurement which provided direct evidence for the notion that the barrier height plays a crucial role in the sensing of different types of gases. The sensing mechanism is illustrated in this work for both devices.
机译:半导体之间联系的作用纳米线和金属电极在一个纳米线场效应晶体管(NW-FET)对不同类型的遥感调查气体。设备,即;和欧姆接触设备(OCD)评估。减少天然气显示优越的反应(CO)相比,氧化气体(没有),而强迫症表明对氧化气体灵敏度高(NO)相比,减少气体(有限公司)类似的工作条件。由接触电阻在吗在化合物和金属半导体结纳米线电导频道占主导地位的变化在强迫症。提取使用低温电流电压测量提供了直接证据的势垒高度发挥不同类型的传感的关键作用气体。这项工作对设备。

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