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首页> 外文期刊>Journal of the Ceramic Society of Japan >Adjustment of GDC layer microstructure and its influence on the electrochemical properties of microtubular SOFCs
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Adjustment of GDC layer microstructure and its influence on the electrochemical properties of microtubular SOFCs

机译:GDC层微结构的调整及其对微管SOFC电化学性能的影响

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The development of a dense chemical reaction blocking layer (CRBL) for micro-tubular solid oxide fuel cells (SOFC) was the aim of this study. The electrochemical performance and stability of SOFCs were also investigated since they strongly depend on fabrication conditions for the electrolyte and CRBL layers. Slurries of two commercial Ce0.8Gd0.2O1.90 powders were prepared and deposited by dip coating onto micro-tubular SOFCs. The results indicate that the layer density and homogeneity are essentially determined by the width of particle size distribution (PSD) apart from the colloidal stability. Two methods were applied for achieving a narrow PSD additional to dispersion: grinding and centrifugation. Particles with a very narrow PSD obtained through centrifugation process could be sintered together even at 1300°C and a layer with a density close to 99% could be reached. In contrast, simple ultrasonic dispersion of powders diminished the distribution width insufficiently and gave porous layer. Impedance measurements showed clear relationship between GDC layer density and ohmic resistance of the cells which directly correlates to their performance with a power density 0.75 W/cm2 at 0.7 volt and OCV~1.06 V obtained at 850°C for the cells with the densest GDC layer.
机译:本研究的目的是开发用于微管固体氧化物燃料电池(SOFC)的致密​​化学反应阻挡层(CRBL)。还研究了SOFC的电化学性能和稳定性,因为它们很大程度上取决于电解质和CRBL层的制造条件。制备了两种市售Ce 0.8 Gd 0.2 O 1.90 粉末的浆液,并通过浸涂将其沉积在微管SOFC上。结果表明,除了胶体稳定性之外,层密度和均匀性基本上由粒径分布(PSD)的宽度决定。除分散以外,还采用了两种方法来实现窄PSD:研磨和离心。通过离心过程获得的具有非常窄的PSD的颗粒甚至可以在1300°C下烧结在一起,并且可以达到密度接近99%的层。相反,粉末的简单超声分散不足以减小分配宽度并提供多孔层。阻抗测量表明,电池的GDC层密度与欧姆电阻之间存在清晰的关系,这与电池的性能直接相关,功率密度在0.7伏时为0.75 W / cm 2 ,在850°C下为OCV〜1.06 V具有最密集GDC层的单元。

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