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Reactive Spray Deposition Technology \u2013 An one-step deposition technique for Solid Oxide Fuel Cell barrier layers

机译:反应喷涂技术\ u2013固体氧化物燃料电池阻挡层的一步沉积技术

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摘要

In order to reduce the cost of the manufacturing of Solid Oxide Fuel Cells (SOFC), and to enable metal supported cell fabrication, a new fabrication method called Reactive Spray Deposition Technology (RSDT) for direct deposition of the material onto ceramic or metal support for low temperature SOFC is currently being developed. The present work describes the effect on the performance of a SOFC when a Gd0.2Ce0.8O1.9 (GDC) layer has been introduced as diffusion barrier layer between the yttria stabilized zirconia(YSZ) electrolyte and the La0.6Sr0.4CoO3?delta (LSC) cathode. The dense, thin and fully crystalline GDC films were directly applied by RSDT, without any post-deposition heating or sintering step. The quality of the film and performance of the cell prepared by RSDT was compared to a GDC blocking layer deposited by screen printing (SP) and then sintered. The observed ohmic resistance of the ASC with a GDC layer deposited by RSDT is 0.24 Omega cm2, which is close to the expected theoretical value of 0.17 Omega cm2 for a 5-um thick 8 mol% yttria YSZ (8YSZ) electrolyte at 873 K.
机译:为了降低固体氧化物燃料电池(SOFC)的制造成本并实现金属支撑的电池制造,一种称为反应喷涂技术(RSDT)的新制造方法可将材料直接沉积到陶瓷或金属载体上,目前正在开发低温SOFC。本工作描述了当在氧化钇稳定的氧化锆(YSZ)电解质和La0.6Sr0.4CoO3?delta之间引入扩散阻挡层作为Gd0.2Ce0.8O1.9(GDC)层时对SOFC性能的影响。 (LSC)阴极。致密,薄而全结晶的GDC膜可通过RSDT直接施加,无需任何沉积后加热或烧结步骤。将通过RSDT制备的薄膜质量和电池性能与通过丝网印刷(SP)沉积然后烧结的GDC阻挡层进行比较。通过RSDT沉积的具有GDC层的ASC的观察到的欧姆电阻为0.24Ω·cm2,接近于873 K下5微米厚的8 mol%氧化钇YSZ(8YSZ)电解质的预期理论值0.17Ω·cm2。

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