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Key issues in processing metal-supported proton conducting anodes for SOFCs applications

机译:处理用于SOFC的金属支撑质子传导阳极的关键问题

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摘要

BaCe0.65Zr0.2Y0.15O3-δ(BCZY) have been recently proposed for IT-SOFCs due to its high proton conductivity. A the same time considerable efforts are directed towards the development of metal-supported cells. The combination of the potential advantages offered by either proton conductors based cells and metal supported configuration has never been explored before. In this work the technological issues to produce proton conducting BCZY-Ni anodes stainless steel-supported were carefully investigated. A tailored porous metal support was produced by tape casting. Afterwards the anode was deposited by screen printing and the resulting bilayer sintered in reducing atmosphere. Each step of the production process was throughly investigated. A cations interdiffusion between the metallic support and the anodic layer was observed in all the range of temperatures considered. The influence of a CeO2 barrier layer and anode thickness on the cations diffusion and a successful production of planar crack-free anode was deeply analyzed
机译:由于其高质子传导性,最近有人提出将BaCe0.65Zr0.2Y0.15O3-δ(BCZY)用于IT-SOFC。同时,人们大力致力于金属支撑电池的开发。以前从未探索过基于质子导体的电池和金属支撑结构所提供的潜在优势的结合。在这项工作中,对生产质子传导BCZY-Ni不锈钢阳极的技术问题进行了仔细研究。通过流延生产定制的多孔金属载体。之后,通过丝网印刷沉积阳极,并将所得双层在还原气氛中烧结。对生产过程的每个步骤都进行了彻底调查。在所考虑的所有温度范围内均观察到金属载体与阳极层之间的阳离子相互扩散。深入分析了CeO2阻挡层和阳极厚度对阳离子扩散的影响,并成功地生产了平面无裂纹阳极

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