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Impedance Studies of Thin-film and Patterned Sr-doped LaMnO{sub}3 on Yttria-Stabilized Zirconia to Probe Oxygen Reduction Kinetics

机译:薄膜和图案化SR掺杂兰诺·{Sub} 3对氧化钇稳定的氧化锆的阻抗研究,以探测氧气减少动力学

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Sr-doped LaMnO{sub}3 (LSM)/Yttria-stabilized Zirconia (YSZ) are the conventional cathode/electrolyte materials for SOFCs. However, the mechanisms that occur during oxygen reduction reaction (ORR) at the cathode/electrolyte interface are still unclear and have been a roadblock for further enhancement of SOFC performance, especially at low-temperatures. For this study, LSM is fabricated on sputtered and single crystal YSZ by thin-film techniques and patterned via photolithography to obtain precise microelectrodes. EIS results on thin-film LSM microeletrodes supported on thin-film YSZ showed at least four distinct processes during ORR, which were tentatively assigned to (i) surface chemical reaction on LSM, (ii) surface diffusion on LSM, (iii) electrolyte ion transport and (iv) bulk + three-phase boundary (TPB) charge transfer process. It should be noted that the resistance associated with bulk + three-phase boundary charge transfer was highly dependent on LSM electrode thickness. In contrast, thin-film LSM microelectrodes supported on single- crystal YSZ exhibited one distinct process, which is attributed to bulk charge transfer process.
机译:SR掺杂的兰诺{Sub} 3(LSM)/ yTTRIA稳定的氧化锆(YSZ)是用于SOFC的常规阴极/电解质材料。然而,在阴极/电解质界面处的氧还原反应(ORR)期间发生的机制仍然尚不清楚,并且已经是用于进一步增强SOFC性能的路障,特别是在低温下。对于该研究,通过薄膜技术在溅射和单晶YSZ上制造LSM,并通过光刻图案化以获得精确的微电极。 EIS结果在薄膜YSZ上支撑的薄膜LSM微钻点显示出在ORR期间的至少四个不同的方法,其暂时分配到LSM的(i)LSM(II)表面扩散对LSM,(III)电解质离子的表面扩散运输和(IV)批量+三相边界(TPB)电荷转移过程。应当注意,与批量+三相边界电荷传输相关的电阻高度依赖于LSM电极厚度。相反,在单晶YSZ上支撑在单晶YSZ上的薄膜LSM微电极表现出一个不同的过程,其归因于散装电荷转移过程。

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