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Powder synthesis, processing and characterization of lanthanum silicates for SOFC application

机译:SOFC应用镧的合成,加工和表征硅酸盐

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Recent studies have shown that rare earth silicates exhibit higher oxygen conductivity at lower temperatures (500-800 °C) compared to traditional yttria-stabilized cubic zirconia. Among the rare earth silicates, doped lanthanum silicates are known to exhibit higher ionic conductivity. The difficulty in sinterability of these powders combined with the fact that the electrolyte material should be sintered onto a porous anode material in a single sintering step to produce SOFC half cells requires very fine starting powders with high sinterability at lower temperatures (1000-1200°C). In this paper, we report on the synthesis of lanthanum silicates doped with aluminium or iron using the sol-gel process. Using this fairly simple and quick process, nanometer sized powders with an average grain size below 100nm have been syn-thesised, while the intrinsic nanostructure could be maintained in the fully densified electrolyte material after pulsed electric current sintering (PECS) at 1100-1200 °C.
机译:最近的研究表明,与传统的氧化钇稳定的立方氧化锆相比,稀土硅酸盐在较低温度(500-800℃)下表现出更高的氧导电性。在稀土硅酸盐中,已知掺杂的镧硅酸盐表现出更高的离子电导率。在这些粉末的事实,所述电解质材料应当在单个烧结步骤烧结到多孔的阳极材料以产生SOFC半电池组合的烧结性的困难,需要在较低温度下高的烧结性(1000-1200℃的很细的原料粉末)。在本文中,我们用溶胶 - 凝胶工艺报告掺杂铝或铁掺杂的镧硅酸盐的合成。使用这种相当简单且快速的工艺,纳米尺寸粉末具有低于100nm以下的平均晶粒尺寸的粉末,同时,在1100-1200°脉冲电流烧结(PEC)之后,可以将内在纳米结构保持在完全致密的电解质材料中C。

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