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Infiltration of commercially available, anode supported SOFC’s via inkjet printing

机译:通过喷墨印刷渗透市售的阳极支撑SOFC

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摘要

Commercially available anode supported solid oxide fuel cells (NiO-8YSZ/8YSZ/LSCF- 20 mm in diameter) were anode infiltrated with gadolinium doped ceria (CGO) using a scalable drop-on-demand inkjet printing process. Cells were infiltrated with two different precursor solutions—water based or propionic acid based. The saturation limit of the 0.5 μm thick anode supports sintered at 1400 °C was found to be approximately 1wt%. No significant enhancement in power output was recorded at practical voltage levels. Microstructural characterisation was carried out after electrochemical performance testing using high resolution scanning electron microscopy. This work demonstrates that despite the feasibility of achieving CGO nanoparticle infiltration into thick, commercial SOFC anodes with a simple, low-cost and industrially scalable procedure other loss mechanisms were dominant. Infiltration of model symmetric anode cells with the propionic acid based ink demonstrated that significant reductions in polarisation resistance were possible.
机译:使用可扩展的按需按需喷墨印刷工艺,将g掺杂的二氧化铈(CGO)浸入市售阳极支撑的固体氧化物燃料电池(直径为NiO-8YSZ / 8YSZ / LSCF-20 mm)。用两种不同的前体溶液(水基或丙酸基)浸润细胞。发现在1400℃下烧结的0.5μm厚的阳极载体的饱和极限为约1wt%。在实际电压水平下,没有记录到功率输出的显着提高。在使用高分辨率扫描电子显微镜进行电化学性能测试后,进行了微结构表征。这项工作表明,尽管可以通过简单,低成本和可工业升级的程序使CGO纳米颗粒渗透到厚的商业SOFC阳极中,但其他损失机制仍然占主导地位。用丙酸基油墨渗透模型对称阳极电池表明,极化电阻的显着降低是可能的。

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