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CO2 Sensing Characteristics of a La2O3/SnO2 Stacked Structure with Micromachined Hotplates

机译:La2O3 / SnO2堆叠结构与微机械加热板的CO2传感特性

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摘要

Demand for the detection of carbon dioxide (CO2) is increasing in various fields, including air-quality monitoring, healthcare, and agriculture. On the other hand, smart gas sensors, in which micromachined gas sensors are integrated with driving circuits, are desirable toward the development of the society of the internet of things. In this study, micromachined hotplate-based CO2 sensors were fabricated and their characteristics were investigated. The sensors have La2O3/SnO2 stacked layers as a sensing material and Pt interdigitated electrodes. A CO2 response of 2.9 for a CO2 concentration of 1000 ppm was obtained at 350 °C with low power consumption (approximately 17 mW). A relatively large response was obtained compared with previous studies even though a compact sputtered-SnO2 film was used. This high response was speculated to be due to a significant contribution of the resistance component near the electrode. Furthermore, CO2 sensing was successfully performed in the CO2 range of 200–4000 ppm with at least 200-ppm resolution.
机译:在包括空气质量监测,医疗保健和农业在内的各个领域,对二氧化碳(CO2)检测的需求都在增长。另一方面,对于将智能机械传感器与驱动电路集成在一起的智能气体传感器而言,对于物联网社会的发展是理想的。在这项研究中,制造了基于微机械加热板的CO2传感器,并研究了它们的特性。传感器具有La2O3 / SnO2堆叠层作为传感材料和Pt叉指电极。在350°C下以低功耗(约17 mW)获得了针对1000 ppm CO2浓度的2.9 CO2响应。即使使用了紧凑的溅射SnO2膜,与以前的研究相比,仍获得了相对较大的响应。推测该高响应是由于电极附近的电阻成分的显着贡献。此外,在200-4000 ppm的CO2范围内成功进行了CO2感测,分辨率至少为200ppm。

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