Wang Jixin, Cui Jiandong, Zhang Xiao, Tang Wentao, Mao Changhui
GRINMAT State Key Laboratory of Advanced Materials for Smart Sensing, GRINM Group Co., Ltd., Beijing 100088, China.
GRIMAT Engineering Institute Co., Ltd., Beijing 101407, China.
Materials (Basel). 2022 May 12;15(10):3471. doi: 10.3390/ma15103471.
The (Pt/YSZ)/YSZ sensor unit is the basic component of the NO sensor, which can detect the emission of nitrogen oxides in exhaust fumes and optimize the fuel combustion process. In this work, the effect of sintering temperature on adhesion property and electrochemical activity of Pt/YSZ electrode was investigated. Pt/YSZ electrodes were prepared at different sintering temperatures. The microstructure of the Pt/YSZ electrodes, as well as the interface between Pt/YSZ electrode and YSZ electrolyte, were observed by SEM. Chronoamperometry, linear scan voltammetry, and AC impedance were tested by the electrochemical workstation. The results show that increasing the sintering temperature (≤1500 °C) helped to improve adhesion property and electrochemical activity of the Pt/YSZ electrode, which benefited from the formation of the porous structure of the Pt/YSZ electrode. For the (Pt/YSZ) electrode/YSZ electrolyte system, O in YSZ is converted into chemisorbed O on Pt/YSZ, which is desorbed into the gas phase in the form of molecular oxygen; this process could be the rate-controlling step of the anodic reaction. Increasing the sintering temperature (≤1500 °C) could reduce the reaction activation energy of the Pt/YSZ electrode. The activation energy reaches the minimum value (1.02 eV) when the sintering temperature is 1500 °C.
(Pt/YSZ)/YSZ传感器单元是氮氧化物传感器的基本组件,它能够检测废气中氮氧化物的排放并优化燃料燃烧过程。在本工作中,研究了烧结温度对Pt/YSZ电极附着力和电化学活性的影响。在不同烧结温度下制备了Pt/YSZ电极。通过扫描电子显微镜(SEM)观察了Pt/YSZ电极的微观结构以及Pt/YSZ电极与YSZ电解质之间的界面。利用电化学工作站测试了计时电流法、线性扫描伏安法和交流阻抗。结果表明,提高烧结温度(≤1500°C)有助于改善Pt/YSZ电极的附着力和电化学活性,这得益于Pt/YSZ电极多孔结构的形成。对于(Pt/YSZ)电极/YSZ电解质体系,YSZ中的O转化为Pt/YSZ上的化学吸附O,后者以分子氧的形式解吸到气相中;该过程可能是阳极反应的速率控制步骤。提高烧结温度(≤1500°C)可以降低Pt/YSZ电极的反应活化能。当烧结温度为1500°C时,活化能达到最小值(1.02 eV)。