A micro room temperature oxygen sensor based on LaF3 solid electrolyte thin film

氧传感器 电动势 电解质 能斯特方程 分析化学(期刊) 材料科学 蒸发 湿度 薄膜 相对湿度 氧气 电气工程 化学 电极 纳米技术 无机化学 热力学 色谱法 有机化学 物理化学 工程类 物理
作者
Yankun Tang,Ming Zhang,Kedong Chen,Sher Ali Nawaz,Hairong Wang,Jiuhong Wang,Xianqing Tian
出处
期刊:Sensor Review [Emerald Publishing Limited]
卷期号:43 (5/6): 318-331
标识
DOI:10.1108/sr-02-2021-0044
摘要

Purpose Detecting O 2 gas in a confined space at room temperature is particularly important to monitor the work process of precision equipment. This study aims to propose a miniaturized, low-cost, mass-scale produced O 2 sensor operating around 30°C. Design/methodology/approach The O 2 sensor based on lanthanum fluoride (LaF 3 ) solid electrolyte thin film was developed using MEMS technology. The principle of the sensor was a galvanic cell H 2 O, O 2 , Pt | LaF 3 | Sn, SnF 2 |, in which the Sn film was prepared by magnetron sputtering, and the LaF 3 film was prepared by thermal resistance evaporation. Findings Through pretreatments, the sensor’s response signal to 40% oxygen concentration was enhanced from 1.9 mV to 46.0 mV at 30°C and 97.0% RH. Tests at temperatures from 30°C to 50°C and humidity from 32.4% RH to 97.0% RH indicated that the output electromotive force (EMF) has a linear relationship with the logarithm of the oxygen concentration. The sensitivity of the sensor increases with an increase in both humidity and temperature in the couple mode, and the EMF of the sensor follows well with the Nernst equation at different temperatures and humidity. Practical implications This research could be applied to monitor the oxygen concentration below 25% in confined spaces at room temperature safely without a power supply. Originality/value The relationship between temperature and humidity coupling and the response of the sensor was obtained. The nano-film material was integrated with the MEMS process. It is expected to be practically applied in the future.
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