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High temperature mapping of surface electrolyte oxide concentration in solid oxide fuel cells with vibrational Raman spectroscopy

机译:振动拉曼光谱法对固体氧化物燃料电池中表面电解质氧化物浓度的高温作图

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Experiments described in this work employ Raman spectroscopy and electrochemical impedance spectroscopy (EIS) to characterize the properties of a YSZ electrolyte in situ at 715 °C and under electrochemical potential control. The YSZ itself is the electrolyte in a functioning, electrolyte supported SOFC membrane electrode assembly (MEA). Experiments measure the changes in surface chemistry of the YSZ as a function of through-cell overpotential, and experiments are designed to identify what role—if any—surface reduced YSZ plays in electrochemical oxidation and charge transfer. Raman spectra show that the change in YSZ from fully oxidized to surface reduced is reversible and happens on a timescale of minutes at these temperatures. Spatially resolved experiments carried out with polarized cells show that the oxide ion concentration near the three phase boundary (TPB) is depleted even further when an overpotential is applied. The change in relative oxide concentration with respect to overpotential is also reversible. EIS measurements probing lateral impedance across the electrolyte surface show that the surface reduced phase has a lower polarization resistance (Rpol) as through-cell overpotential increases. Results are discussed in terms of reduced resistance to processes involving charge and mass transfer reactions specific to the reduced YSZ surface state...
机译:在这项工作中描述的实验采用拉曼光谱和电化学阻抗光谱(EIS)来表征715°C并在电化学电势控制下的YSZ电解质的特性。 YSZ本身是功能正常的电解质支持的SOFC膜电极组件(MEA)中的电解质。实验测量了YSZ的表面化学变化随电池过电势的变化,并且设计了实验来确定表面还原的YSZ在电化学氧化和电荷转移中的作用(如果有的话)。拉曼光谱表明,YSZ从完全氧化到表面还原的变化是可逆的,并且在这些温度下以几分钟为单位发生。用极化电池进行的空间分辨实验显示,当施加过电势时,三相边界(TPB)附近的氧化物离子浓度甚至进一步减少。相对于过电势的相对氧化物浓度的变化也是可逆的。跨电解质表面横向阻抗的EIS测量表明,随着穿通电池超电势的增加,表面还原相的极化电阻(Rpol)较低。讨论结果的方法是降低对涉及特定YSZ表面状态的电荷和传质反应的过程的抵抗力...

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