首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Sensing behavior of YSZ-based amperometric NO _2 sensors consisting of Mn-based reference-electrode and In _2O _3 sensing-electrode
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Sensing behavior of YSZ-based amperometric NO _2 sensors consisting of Mn-based reference-electrode and In _2O _3 sensing-electrode

机译:基于Mn的参比电极和In _2O _3传感电极组成的基于YSZ的电流型NO _2传感器的传感行为

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摘要

Yttria-stabilized zirconia (YSZ)-based amperometric NO _2 sensors comprised of an In _2O _3 sensing-electrode (SE), a Pt counter-electrode (CE) and a Mn _2O _3 reference-electrode (RE) in both tubular and rod geometries were fabricated and their sensing characteristics were examined. For comparative purposes, the performance of the In _2O _3-SE and Pt-CE were also examined against an internal Pt/air-RE. Experimental observations of tubular YSZ-based gas sensors revealed that a three-electrode system exhibited better electrical signal stability, when compared with a two-electrode system. Additionally, replacing the internal Pt/air-RE with an external Mn _2O _3-RE (exposed to the sample gas), was found to have a negligible effect on the gas sensing characteristics of the tubular sensor. This gas sensing equivalence indicates that Mn _2O _3-RE can successfully replace the Pt/air-RE in an amperometric gas sensor. Similarly, rod-type sensors utilizing an In _2O _3-SE and a Mn _2O _3-RE were observed to have almost identical NO _2 sensing characteristics to that of the tubular sensor. Furthermore, both sensors (tubular or rod geometry) exhibited a linear response to increasing NO _2 concentration in the range of 20-200 ppm at 550 °C.
机译:基于氧化钇稳定的氧化锆(YSZ)的电流型NO _2传感器,在管和棒中均由In _2O _3感应电极(SE),Pt对电极(CE)和Mn _2O _3参比电极(RE)组成制造了几何形状并检查了它们的感测特性。为了进行比较,还针对内部Pt / air-RE检查了In _2O _3-SE和Pt-CE的性能。基于管状YSZ的气体传感器的实验观察表明,与两电极系统相比,三电极系统表现出更好的电信号稳定性。此外,发现用外部Mn _2O _3-RE(暴露于样品气体)代替内部Pt / air-RE对管状传感器的气体传感特性的影响可忽略不计。该气体感应当量表明Mn _2O _3-RE可以成功替代电流型气体传感器中的Pt / air-RE。类似地,观察到利用In _2O _3-SE和Mn _2O _3-RE的棒型传感器具有与管状传感器几乎相同的NO _2传感特性。此外,两个传感器(管状或棒形几何形状)在550°C时对增加的NO _2浓度在20-200 ppm范围内均表现出线性响应。

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