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Design and characterization of LSM/ScCeSZ nanocomposite as mixed ionic-electronic conducting material for functionally graded cathodes of solid oxide fuel cells

机译:LSM / ScCeSZ纳米复合材料作为固体离子燃料电池功能梯度阴极的混合离子电子导电材料的设计与表征

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LSM/ScCeSZ nanocomposite was prepared via ultrasonic dispersion of the mixture of perovskite and fluorite powders in isopropanol in 1:1 ratio with addition of polyvinyl butyral. Studies of the real structure and surface property evolution at sintering under air up to 1100 °C revealed some redistribution of elements between the phases without new phase formation. Sizes of both phase domains remain in nanorange even in the dense material, thus providing a developed perovskite-fluorite interface. The surface layer of nanocomposite is enriched by LSM. The oxygen mobility and reactivity estimated by the oxygen isotope exchange and O_2 TPD exceed those for LSM suggesting a positive role of interfaces as fast oxygen migration paths. Button-cell tests with the LSM/ScCeSZ interlayer between LSNF and a thin ScYSZ layer covering Ni/YSZ cermet demonstrated a high and stable performance promising practical application promising for practical application.
机译:LSM / ScCeSZ纳米复合材料是通过将钙钛矿和萤石粉末的混合物以1:1的比例超声分散在异丙醇中并添加聚乙烯醇缩丁醛制备的。对在高达1100°C的空气中进行烧结时的真实结构和表面性质演变的研究表明,相之间的元素有些重新分布,而没有新的相形成。即使在致密材料中,两个相域的大小也保持在纳米范围内,因此提供了发达的钙钛矿-萤石界面。纳米复合材料的表面层被LSM富集。通过氧同位素交换和O_2 TPD估计的氧迁移率和反应性超过了LSM的迁移率和反应性,表明界面作为快速的氧迁移路径具有积极作用。在LSNF与覆盖Ni / YSZ金属陶瓷的薄ScYSZ层之间的LSM / ScCeSZ中间层进行的纽扣电池测试显示出高且稳定的性能,有望在实际应用中得到应用。

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