Study on the aging pattern of Pt-Au alloy oxygen-pumping electrode of NOx sensor

Xiaoqing Jiang, Ling-na Wan, Jie Wang, Xianwei Qian, Xuebin Li, Jie Zou, J. Jian
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Abstract

The catalytic activity of the oxygen-pumping electrode in automotive nitrogen oxide sensors has an essential effect on the final measurement accuracy of nitrogen oxides. To investigate the variation pattern of catalytic activity of Pt-Au alloy oxygen-pumping electrode affected by Au content and aging time, the corresponding three samples with various Au content were prepared by high-temperature co-fired ceramic (HTCC) process. All samples were subjected to long-term and high-temperature aging in a simulated automotive exhaust atmosphere, and the electrodes at different aging stages were tested for AC impedance and characterized for morphology. The results of testing show that the catalytic activity of the Pt-Au alloy electrodes decreases with the increase of Au content. At the same time, the catalytic activity of the electrodes also decays exponentially with the increasing aging time and stabilizes at about three weeks. The explanation is that as the Au content increases and aging proceeds, the electrochemical reaction triple phase boundaries (TPBs) decrease, and the catalytic activity of the electrodes decreases.
NOx传感器Pt-Au合金抽氧电极的老化规律研究
汽车氮氧化物传感器中抽氧电极的催化活性对氮氧化物的最终测量精度有重要影响。为了研究Au含量和时效时间对Pt-Au合金抽氧电极催化活性的影响规律,采用高温共烧陶瓷(HTCC)法制备了3种不同Au含量的样品。所有样品在模拟汽车尾气环境中进行长期高温老化,并对不同老化阶段的电极进行交流阻抗测试和形貌表征。测试结果表明,Pt-Au合金电极的催化活性随着Au含量的增加而降低。同时,电极的催化活性也随着老化时间的增加呈指数衰减,稳定在3周左右。这是因为随着Au含量的增加和老化的进行,电化学反应的三相边界(TPBs)减小,电极的催化活性降低。
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