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Manufacture of Solid Oxide Fuel Cells Using Electroless Co-Deposition: A Review of Work carried out at Edinburgh Napier University

机译:化学共沉积制造固体氧化物燃料电池:爱丁堡纳皮尔大学的工作回顾

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This paper reviews work carried out at Edinburgh Napier University on the manufacture of anodes and cathodes for solid oxide fuel cells (SOFCs) using electroless co-deposition of nickel and ceramic powders. Most of the work has been focused on anodes where the co-deposition of nickel and yttria stabilised zirconia (YSZ) negates the need for traditional manufacturing methods such as screen printing and removes the need for expensive and time consuming high temperature consolidation of the ceramic part of the composite. Work has also been carried out manufacturing cathodes by electroless co-deposition replacing YSZ with lanthanum strontium manganite and lanthanum nickel ferrite. Anodes and cathodes of both planar and tubular designs of SOFCs have been successfully manufactured using this technique and process variables have included ceramic particle size, bath pH, ceramic loading, the inclusion of pore-formers and tubular orientation in the electroless bath. Testing of the electrodes included impedance analysis, long term degradation testing at 850°C for 500 and 1000-hours, high temperature electrical conductivity measurements, scanning electron microscopy and energy dispersive X-ray analysis. The cost benefits of the electroless co-deposition process compared with other conventional processes are also discussed.
机译:本文回顾了爱丁堡纳皮尔大学在使用镍和陶瓷粉末的化学共沉积制造固体氧化物燃料电池(SOFC)的阳极和阴极方面所做的工作。大部分工作都集中在阳极上,镍和氧化钇稳定的氧化锆(YSZ)的共同沉积消除了对传统制造方法(例如丝网印刷)的需求,并且消除了陶瓷零件昂贵且费时的高温固结的需要复合材料的。通过化学共沉积用镧锶锰矿和镧镍铁氧体替代YSZ来制造阴极也已经进行了工作。使用这种技术已经成功地制造了SOFC平面和管状设计的阳极和阴极,工艺变量包括陶瓷粒径,镀液pH,陶瓷负载,成孔剂的包含和无电镀液中的管状取向。电极的测试包括阻抗分析,在850°C下进行500和1000小时的长期降解测试,高温电导率测量,扫描电子显微镜和能量色散X射线分析。还讨论了化学共沉积工艺与其他常规工艺相比的成本优势。

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