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Low temperature operation of thin-film limiting-current type oxygen sensor using graded-composition layer electrodes

机译:使用梯度组成层电极的薄膜限流型氧气传感器的低温操作

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摘要

A thin-film limiting-current type oxygen sensor incorporating graded-composition layers (GCL) was fabricated. The layers were formed by changing the sputtering power so that the mixing ratio of Pt and yttria-stabilized zirconia (YSZ) may changed continuously. The electrode interface resistance of the sensor has greatly decreased by inserting GCL between Pt electrode and YSZ electrolyte. In addition, the temperature dependence of the electrode interface resistance in the sensor with GCL has also become small. Therefore, even if the heat temperature of the sensor with GCL was decreased by 100-150℃ more than that of the sensor without GCL, the sensor with GCL could maintain the sensor output. It was demonstrated that the insertion of GCL was highly effective in decreasing the operating temperature of the thin-film limiting-current type sensor. Shortening of the warm-up time can be expected by using this electrode.
机译:制造了具有梯度组成层(GCL)的薄膜限流型氧气传感器。通过改变溅射功率来形成这些层,以使得Pt和氧化钇稳定的氧化锆(YSZ)的混合比可以连续地变化。通过在Pt电极和YSZ电解质之间插入GCL,传感器的电极界面电阻已大大降低。另外,具有GCL的传感器中的电极界面电阻的温度依赖性也变小。因此,即使使用GCL的传感器的温度比没有使用GCL的传感器的温度降低100-150℃,使用GCL的传感器也可以保持传感器的输出。已经证明,插入GCL对于降低薄膜极限电流型传感器的工作温度非常有效。通过使用该电极,可以缩短预热时间。

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