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Investigation of porous counter electrode for the CO_2 sensing properties of NASICON based gas sensor

机译:基于NASICON的气体传感器对CO_2传感特性的多孔对电极的研究

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In general, solid electrolyte based potentiometric CO_2 sensors respond well to changes in CO_2 concentration, following Nernst equation when dry CO_2 is used. Unfortunately, the sensing capability will be fatally disturbed when these sensors are exposed to humid conditions. To overcome this problem, a sensor using a porous BaCO_3 film as counter electrode (p-Sensor) was fabricated. For the purpose of comparison, sensor without this porous structure (o-Sensor, i.e. an opened counter electrode) and sensor with a dense BaCO_3 film (d-Sensor) also have been fabricated. The electromotive force (EMF) of all sensors exhibited excellence Nernstian behavior with the logarithm of CO_2 concentration in the range 300-755 ppm at 400 °C under dry condition. However, the EMF values of each sensor tended to shift upward with increase of relative humidity. It was found that the relative humidity dependence of EMF originates from both of auxiliary and counter electrodes. Under the same humid conditions, the order of the EMF deviation of three types of sensors was shown as the following: d-sensor > p-sensor > o-sensor. Nevertheless, only p-sensor still remained the Nernstain behavior even under humid conditions. The electron transfer numbers are in good agreement with theoretical value of n = 2. Moreover, the transients were sufficiently sharp, taking less than 1 min for 90% response or recovery. The most important thing is EMF can rapidly recover the original value without any deterioration. The reason for the satisfactory performance of p-sensor under humid condition was suggested to be due to the amount of H_2O molecular adsorbed on the porous counter electrode is very close to that of auxiliary electrode.
机译:通常,基于固体电解质的电位式CO_2传感器在使用干式CO_2时遵循能斯特方程,对CO_2浓度的变化响应良好。不幸的是,当这些传感器暴露于潮湿条件下时,其传感能力将受到致命的干扰。为了克服此问题,制造了使用多孔BaCO_3膜作为对电极的传感器(p传感器)。为了进行比较,还制造了没有这种多孔结构的传感器(o型传感器,即开放的对电极)和具有致密的BaCO 3膜的传感器(d型传感器)。在干燥条件下,所有传感器的电动势(EMF)在400°C下的CO_2浓度在300-755 ppm范围内均表现出出色的能斯特行为。但是,每个传感器的EMF值都随着相对湿度的增加而向上移动。已发现,EMF的相对湿度依赖性源自辅助电极和对电极。在相同的湿度条件下,三种传感器的EMF偏差顺序如下:d传感器> p传感器> o传感器。然而,即使在潮湿条件下,仅p传感器仍保持能斯特效应。电子转移数与n = 2的理论值非常吻合。此外,瞬态足够尖锐,只需不到1分钟即可获得90%的响应或恢复。最重要的是,EMF可以迅速恢复原始值而不会降低任何性能。提出在潮湿条件下使p型传感器具有令人满意的性能的原因是由于多孔对电极上吸附的H_2O分子的量非常接近辅助电极。

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