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Effect of electrode interface structure on the characteristics of a thin-film limiting current type oxygen sensor

机译:电极界面结构对薄膜极限电流型氧传感器特性的影响

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摘要

A thin-film limiting current type oxygen sensor with graded-composition layer electrodes has been developed. Sensor resistance was governed by the electrode interface resistance. However, it was not clear whether anode or cathode effects were dominant. In this study, three kinds of electrodes with different interface structures (laminated, mixed, and graded-composition layers) were applied to anode and cathode, and their influences on sensor resistance were investigated. The sensor using the graded-composition layer electrodes showed the lowest resistance, as well as excellent low-temperature activity and stability. The sensor with the laminated electrode for cathode and the graded-composition layer for anode showed interface resistance 50% lower than the inverse configuration. Anode performance was a governing factor in overall sensor resistance.
机译:已经开发了具有梯度组成层电极的薄膜极限电流型氧气传感器。传感器电阻由电极界面电阻控制。然而,尚不清楚阳极效应还是阴极效应是主要的。在这项研究中,将三种具有不同界面结构的电极(层压,混合和渐变组成层)应用于阳极和阴极,并研究了它们对传感器电阻的影响。使用渐变组成层电极的传感器显示出最低的电阻,以及出色的低温活性和稳定性。具有用于阴极的层压电极和用于阳极的梯度组成层的传感器显示的界面电阻比反向配置低50%。阳极性能是整个传感器电阻的决定因素。

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