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Processing and electrochemical performance of manganese-doped lanthanum-strontium chromite in oxidizing and reducing atmospheres

机译:锰掺杂亚铬酸锶锶在氧化还原气氛中的制备及电化学性能

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This study reports the role of oxygen partial pressure (PO2) on the microstructural changes and compound formation during the exposure of (La0.75Sr0.25)(0.95)Cr0.7Mn0.3O3 (LSCM73) to 1400 degrees C to emulate oxygen transport membrane device fabrication. Results of electrochemical testing of LSCM73+8YSZ//8YSZ//LSCM73+8YSZ symmetrical cells, is also reported at 950 degrees C with time for 80 h in oxidizing (air) and reducing atmospheres (Ar-3%H-2 3%H2O). Our results from elevated temperature exposure studies show a decrease in the density during exposure to reducing atmospheres due to the absence of liquid phase assisted sintering and inability to form SrCrO4. Formation of rhombohedral structure and MnCr2O4 spinel phase is evident in air whereas Mn3O4 phase formation occurs along with lattice transformation to cubic structure at lower PO2. Our experimental results are in agreement with LSCM73 phase diagram constructed using Thermo-Calc. Stable electrochemical performance is obtained in air and in reducing atmosphere, non-ohmic resistance increases with time which is attributed to Sr-segregation on LSCM73 surface and interaction between LSCM/8YSZ. No delamination of the electrode layer is observed in both oxidizing and reducing atmosphere. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:这项研究报告了氧气分压(PO2)在(La0.75Sr0.25)(0.95)Cr0.7Mn0.3O3(LSCM73)暴露于1400摄氏度以模拟氧气传输膜过程中对微观结构变化和化合物形成的作用设备制造。还报道了LSCM73 + 8YSZ // 8YSZ // LSCM73 + 8YSZ对称电池的电化学测试结果,该结果在950摄氏度,氧化时间(空气)和还原气氛(Ar-3%H-2 3%H2O)中经过80小时)。我们的高温暴露研究结果表明,由于没有液相辅助烧结且无法形成SrCrO4,暴露于还原性气氛中时密度降低。在空气中,菱形结构和MnCr2O4尖晶石相的形成很明显,而Mn3O4相的形成伴随晶格转变为低PO2的立方结构。我们的实验结果与使用Thermo-Calc构建的LSCM73相图一致。在空气中和还原性气氛中可获得稳定的电化学性能,非欧姆电阻随时间增加,这归因于LSCM73表面上的Sr偏析以及LSCM / 8YSZ之间的相互作用。在氧化和还原气氛中均未观察到电极层的分层。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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