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Correlation between internal chemical potential and durabilty of yttria-doped barium cerate (bcy)-based protonic ceramic fuel cells

机译:氧化钇掺杂的铈酸钡(bcy)基质子陶瓷燃料电池的内部化学势与耐久性之间的相关性

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The correlation between internal chemical potential, and durability of anode-supported BCY (BaCe0.85Y0.15O3-delta) electrolyte cells, was investigated as a function of electrolyte thickness. Internal hydrogen and oxygen chemical potentials were measured on thin (similar to 10 mu m) and thick (similar to 50 mu m) BCY electrolyte using an embedded Pt probe. As the electrolyte thickness decreased, the internal chemical potential became dominated by the gases surrounding the cathode, indicating that the thin BCY cell may be vulnerable to water vapor produced at the cathode during operation. Constant -current tests were conducted on a thin (-10 mu m) BCY electrolyte cell with a BCY+ LSCF ((La,Sr)(Co,Fe)O3-delta) cathode, and a thick (similar to 35 mu m) BCY electrolyte cell with a BZY (BaZr0.85Y0.15O3-delta)+ LSCF cathode, under positive and negative voltage conditions. Consistent with the results of the internal chemical -potential measurements, the former showed a significant rate of degradation due to changes in BCY composition in the electrolyte and cathode, while the latter showed much better durability, regardless of the sign of cell voltage. Thus, the present work shows the effect of BCY electrolyte thickness and selection of cathode material, on the durability of BCY based cells, in terms of their internal chemical potential. (C) 2016 Elsevier Ltd. All rights reserved.
机译:研究了内部化学势与阳极支撑的BCY(BaCe0.85Y0.15O3-delta)电解质电池的耐久性之间的相关性,该关系是电解质厚度的函数。使用嵌入式Pt探针在薄(约10微米)和厚(约50微米)BCY电解质上测量内部氢和氧的化学势。随着电解质厚度的减少,内部化学势开始被阴极周围的气体所支配,这表明薄BCY电池可能易受操作过程中阴极产生的水蒸气的影响。在具有BCY + LSCF((La,Sr)(Co,Fe)O3-delta)阴极和较厚(约35μm)BCY的薄(-10μm)BCY电解质电池上进行恒流测试在正负电压条件下具有BZY(BaZr0.85Y0.15O3-delta)+ LSCF阴极的电解质电池。与内部化学电势测量的结果一致,由于电池和阴极中BCY组成的变化,前者显示出显着的降解速率,而无论电池电压的迹象如何,后者均显示出更好的耐久性。因此,本工作显示了BCY电解质厚度和阴极材料选择对BCY基电池内部化学势的影响。 (C)2016 Elsevier Ltd.保留所有权利。

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