Zirconia-based mixed potential sensor with Pt electrode prepared by spin-coating of polymeric precursor

A. Chrzan, Ł. Woźniak, D. Szymczewska, P. Jasiński
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Abstract

Many types of yttria-stabilized zirconia (YSZ) based gas sensors have been explored extensively in recent years. Great attention have been directed to mixed-potential-type gas sensors. It is due to growing concerns with environmental issues. Not without a significance is the fact of very attractive performance of this type of sensor allowing to detect low concentration of pollutant gases. In this paper two types of YSZ based mixed-potential planar sensors were investigated, with platinum electrode painted using commercial paste and with spin coated platinum layer. Both types had second electrode in the form of porous gold. Measurements were performed at 400 °C in synthetic air and different concentrations of SO2. Gas flow was set to 100 cm3min-1 and the concentration of 50 ppm SO2 was tested. During this measurements the sensor was sintered in-situ at increasing temperatures. Sensor with 100 nm spin-coated platinum layer sintered at 700 °C was shown to exhibit two times smaller response than sensor with 5 μm porous electrode, while consisting of over 20 times smaller amount of Pt. The influence of sintering temperature on electrical conductivity of platinum films was also examined. Moreover, the platinum microstructure was investigated using SEM microscopy.
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聚合前驱体自旋涂覆制备氧化锆基Pt电极混合电位传感器
近年来,许多类型的氧化钇稳定氧化锆(YSZ)气体传感器得到了广泛的研究。混合电位型气体传感器受到了极大的关注。这是由于人们越来越关注环境问题。并非没有意义的事实是非常有吸引力的性能,这种类型的传感器允许检测低浓度的污染气体。本文研究了两种基于YSZ的混合电位平面传感器,一种是用商业浆料涂覆铂电极,另一种是用自旋涂覆铂层。两种类型都有多孔金形式的第二电极。测量在400°C的合成空气和不同浓度的SO2中进行。气体流量设置为100 cm3min-1,测试SO2浓度为50 ppm。在测量过程中,传感器在不断升高的温度下就地烧结。结果表明,在700℃下烧结的100 nm自旋涂覆铂层传感器的响应比5 μm多孔电极传感器的响应小2倍,而铂的含量却少20倍以上。同时,研究了烧结温度对铂膜电导率的影响。利用扫描电镜对铂的微观结构进行了研究。
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Realization of a fiber optic sensor detecting the presence of a liquid Zirconia-based mixed potential sensor with Pt electrode prepared by spin-coating of polymeric precursor Techniques of acquiring additional features of the responses of individual gas sensors Extraction and evaluation of gas-flow-dependent features from dynamic measurements of gas sensors array Features extraction from the electrocatalytic gas sensor responses
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