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首页> 外文期刊>ACS applied materials & interfaces >Low-Voltage-Driven Sensors Based on ZnO Nanowires for Room-Temperature Detection of NO2 and CO Gases
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Low-Voltage-Driven Sensors Based on ZnO Nanowires for Room-Temperature Detection of NO2 and CO Gases

机译:基于ZnO纳米线的低压驱动传感器,用于NO2和CO气体的室温检测

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摘要

Herein, we report the synthesis of pristine and Au-functionalized ZnO nanowires (NWs) for low power consumption (self-heated) gas sensors at room temperature. The ZnO NWs were produced via a vapor-liquid-solid growth technique, and Au layers with different thicknesses were sputter-deposited on the ZnO NWs, followed by subsequent annealing. Microscopic characterization methods demonstrated that ZnO NWs were successfully formed. Pristine ZnO NW gas sensors showed the best sensitivity toward either CO or NO2 gases at 300 and 350 degrees C, respectively. Also, the sensitivities of pristine ZnO NW gas sensors were tested toward NO2 gas under different applied voltages; the sensors revealed a good response and selectivity under an applied voltage of 7 V. Au-functionalized ZnO NW gas sensors exhibited the best response for CO gas at an applied voltage of 7 V and showed a much higher response relative to the pristine ZnO NWs. The sensing mechanisms for pristine and functionalized gas sensors are comprehensively discussed.
机译:在此,我们报告了在室温下为低功耗(自加热)气体传感器的原始和Au官能化ZnO纳米线(NWS)的合成。通过汽液 - 固体生长技术生产ZnO NWS,并且在ZnO NWS上溅射沉积不同厚度的Au层,然后进行后续退火。显微表征方法证明了ZnO NWS成功形成。原始ZnO NW气体传感器分别为300和350摄氏度的CO或NO 2气体显示出最佳敏感性。而且,原始ZnO NW气体传感器的敏感性在不同施加的电压下朝向NO 2气体进行了测试;传感器揭示了良好的响应和选择性,在7V的施加电压下的选择性。Au官能化ZnO NW气体传感器在7V的施加电压下表现出最佳响应,并显示出相对于原始ZnO NWS的更高响应。综合讨论了原始和官能化气体传感器的传感机制。

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