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Oxygen detection using junctions based on thin films of yttria-stabilized zirconia doped with platinum nanoparticles and pure yttria-stabilized zirconia

机译:使用基于掺杂有铂纳米颗粒的氧化钇稳定的氧化锆和纯氧化钇稳定的氧化锆薄膜的结进行氧检测

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Here we develop new types of ceramic junctions composed of two plane-parallel ceramic electrodes: one of them consists of yttria-stabilized zirconia (YSZ), the other one is composed of YSZ doped with platinum nanoparticles. The bottom electrode is either of pure YSZ or of doped YSZ + Pt with the top electrode being of the opposite material. The concentration of platinum has been varied at 2.5, 4.5 and 6.5 mol%. The tests are made in an experimental setup allowing the exchange of gas atmosphere with variable oxygen content at fixed temperature or the gradual change in the temperature up to about 400 degrees C in a pure nitrogen medium. For YSZ/YSZ + Pt junctions the potential difference is positive, while for YSZ + Pt/YSZ junctions it is negative. At a fixed temperature we investigate the rough response to oxygen of different structures by periodically exchanging the oxygen from 0.9% (technical grade nitrogen) to 21 % (air). Good reproducibility of the results is maintained both in the regime of nitrogen flowing and air flowing. The detailed investigation of the kinetics of potential relaxation revealed that it is governed by the diffusion of oxygen in the ceramics. The fastest response is detected with the junctions YSZ + Pt/YSZ with 6.5 mol% of platinum. We also study the potential difference at varying oxygen concentration by tuning the ratio between air and nitrogen. The functional dependence is Nernstian type like in potentiometric gas sensors, which is well-described by the respective equation if the junction is considered as a sort of thermocouple with the electrodes being the contact point. This makes our junctions promising as oxygen sensors at low working temperature and very low oxygen content. (C) 2007 Elsevier B.V. All rights reserved.
机译:在这里,我们开发了由两个平面平行的陶瓷电极组成的新型陶瓷结:一种由氧化钇稳定的氧化锆(YSZ)组成,另一种由掺有铂纳米粒子的YSZ组成。底部电极是纯YSZ或掺杂的YSZ + Pt,顶部电极是相反的材料。铂的浓度变化为2.5、4.5和6.5摩尔%。测试是通过实验装置进行的,该装置允许在固定温度下交换具有可变氧含量的气体气氛,或者在纯氮气介质中逐渐升高温度直至约400摄氏度。对于YSZ / YSZ + Pt结,电位差为正,而对于YSZ + Pt / YSZ结,电位差为负。在固定温度下,我们通过定期将氧气从0.9%(工业级氮气)交换为21%(空气)来研究不同结构对氧气的粗略响应。在氮气流和空气流的状态下,都可以保持结果的良好重现性。对电位弛豫动力学的详细研究表明,它受陶瓷中氧的扩散支配。用含6.5 mol%铂的YSZ + Pt / YSZ结检测到最快的响应。我们还通过调节空气和氮气之间的比率来研究不同氧气浓度下的电势差。功能依赖性是像电位气体传感器中那样的能斯特型,如果将结点视为一种以电极为接触点的热电偶,则可以通过相应的方程式很好地描述。这使我们的结极有希望在低工作温度和非常低的氧气含量下用作氧气传感器。 (C)2007 Elsevier B.V.保留所有权利。

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