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Conductive protection layers on oxidation resistant alloys for SOFC interconnect applications

机译:用于SOFC互连应用的抗氧化合金上的导电保护层

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Conductive oxide coatings are used as protection layers on metallic interconnects in SOFCs to improve their surface stability and electrical performance, as well as to mitigate or prevent chromium poisoning to cells. This paper discusses materials requirements for this particular application and summarizes our systematic study on varied conductive oxides as potential candidate materials for protection layers on stainless steel substrates. Overall, it appeared that chromites such as (La,Sr)CrO3 improved surface stability, but might not be good candidates for protection layer applications due to chromium vaporization, albeit at a lower rate than Cr2O3, from these oxides at high temperatures in air or moist air. The application of non-chromite perovskite (La,Sr)FeO3 (LSF) protection layers resulted in improved oxidation resistance and electrical performance. It is doubtful, however, that LSF can be an effective barrier to prevent chromium release during long term SOFC stack operation due to chromium diffusion through the LSF coatings. With a high oxygen ion conductivity, the coatings of Sn-doped In2O3 failed to provide protection to the metal substrate and are thus not suitable for the protection layer applications. The best performance was achieved using thermally-grown (Mn,CO)(3)O-4 spinel protection layers that substantially improved the surface stability of the metal substrates, and prevented chromium outward migration. (c) 2006 Published by Elsevier B.V.
机译:导电氧化物涂层被用作SOFC中金属互连上的保护层,以改善其表面稳定性和电气性能,并减轻或防止铬对电池的中毒。本文讨论了这种特殊应用的材料要求,并总结了我们对各种导电氧化物作为不锈钢基材上保护层的潜在候选材料的系统研究。总体而言,似乎铬铁矿如(La,Sr)CrO3改善了表面稳定性,但由于铬的汽化(尽管其速率低于Cr2O3),在高温或空气中从铬氧化物中蒸发时,铬铁矿可能不是保护层应用的良好选择。潮湿的空气。非铬铁矿钙钛矿(La,Sr)FeO3(LSF)保护层的应用提高了抗氧化性和电性能。然而,令人怀疑的是,由于铬通过LSF涂层的扩散,LSF能否成为防止SOFC长期堆放过程中铬释放的有效屏障。由于具有高的氧离子传导性,Sn掺杂的In2O3涂层无法为金属基材提供保护,因此不适合用于保护层应用。使用热生长的(Mn,CO)(3)O-4尖晶石保护层可实现最佳性能,该保护层可显着提高金属基板的表面稳定性并防止铬向外迁移。 (c)2006年由Elsevier B.V.发布

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