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首页> 外文期刊>International Journal of Quantum Chemistry >Physicochemical compatibility of SrCeO3 with potential SOFC cathodes
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Physicochemical compatibility of SrCeO3 with potential SOFC cathodes

机译:SrCeO3与潜在的SOFC阴极的理化相容性

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The chemical and physical compatibility of SrCeO3 is investigated with respect to LaMO3 (M = Mn, Fe, Co) and La2-x.SrxNiO4 (x = 0, 0.8) via the reaction of fine-grained powder compacts and solid-state diffusion Couples. Compositions were chosen so as to give predictive insight into possible candidate materials for all-oxide electrochemical devices. Results show the primary reaction in these systems to be the dissolution of SrO from SrCeO3 into the LaMO3/La2-xSrxNiO4, and corresponding formation of La-doped CeO2. Reaction kinetics are observed to be relatively fast, with element profiles Suggesting the diffusion of Sr2+ in ceria to be surprisingly rapid. It is demonstrated that perovskite starting materials represent poor candidates for use with SrCeO3, reacting completely to form Ruddlesden-Popper/K2NiF4 type oxides. Reaction with LaNiO4 is less pronounced, and formation of secondary phases suppressed for the composition La1.2Sr0.8NiO4. It is thus concluded that Ruddlesden-Popper type oxides represent good candidate materials for use with a SrCeO3-based electrolytes when doped with appropriate levels of Sr. (C) 2007 Elsevier Inc. All rights reserved.
机译:通过细粒粉末压块和固态扩散偶的反应,研究了SrCeO3对LaMO3(M = Mn,Fe,Co)和La2-x的化学和物理相容性.SrxNiO4(x = 0、0.8) 。选择成分以便对全氧化物电化学装置的可能候选材料提供预测性见识。结果表明,这些系统中的主要反应是SrO从SrCeO3溶解到LaMO3 / La2-xSrxNiO4中,并相应地形成了La掺杂的CeO2。观察到反应动力学相对较快,元素分布表明二氧化铈中Sr2 +的扩散非常快。事实证明,钙钛矿原料代表不适合与SrCeO3一起使用,完全反应形成Ruddlesden-Popper / K2NiF4型氧化物。与LaNiO4的反应不太明显,并且对于La1.2Sr0.8NiO4组成,第二相的形成受到抑制。因此可以得出结论,当掺入适当量的Sr.(C)2007 Elsevier Inc.时,Ruddlesden-Popper型氧化物是与SrCeO3基电解质一起使用的良好候选材料。保留所有权利。

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