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Using the Transient Response of WO3 Nanoneedles under Pulsed UV Light in the Detection of NH3 and NO2

机译:脉冲紫外光下WO3纳米酮的瞬态响应在NH3和NO2检测中的应用

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摘要

Here we report on the use of pulsed UV light for activating the gas sensing response of metal oxides. Under pulsed UV light, the resistance of metal oxides presents a ripple due to light-induced transient adsorption and desorption phenomena. This methodology has been applied to tungsten oxide nanoneedle gas sensors operated either at room temperature or under mild heating (50 °C or 100 °C). It has been found that by analyzing the rate of resistance change caused by pulsed UV light, a fast determination of gas concentration is achieved (ten-fold improvement in response time). The technique is useful for detecting both oxidizing (NO2) and reducing (NH3) gases, even in the presence of different levels of ambient humidity. Room temperature operated sensors under pulsed UV light show good response towards ammonia and nitrogen dioxide at low power consumption levels. Increasing their operating temperature to 50 °C or 100 °C has the effect of further increasing sensitivity.
机译:在这里,我们报告了使用脉冲紫外光激活金属氧化物的气体传感响应的情况。在脉冲紫外线下,由于光诱导的瞬态吸附和解吸现象,金属氧化物的电阻会产生波动。该方法已应用于在室温或温和加热(50°C或100°C)下运行的氧化钨纳米针气体传感器。已经发现,通过分析由脉冲紫外线引起的电阻变化率,可以快速确定气体浓度(响应时间提高了十倍)。即使在存在不同水平的环境湿度的情况下,该技术也可用于检测氧化性(NO2)和还原性(NH3)气体。在脉冲紫外线下,室温操作的传感器在低功耗水平下显示出对氨和二氧化氮的良好响应。将其工作温度提高到50°C或100°C可以进一步提高灵敏度。

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