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新型镁掺杂钼酸锶钙钛矿用作固体氧化物燃料电池的阳极材料

Novel Mg-Doped SrMoO₃ Perovskites Designed as Anode Materials for Solid Oxide Fuel Cells.

作者信息

Cascos Vanessa, Alonso José Antonio, Fernández-Díaz María Teresa

机构信息

Instituto de Ciencia de Materiales de Madrid, CSIC, Cantoblanco, 28049 Madrid, Spain.

Institut Laue Langevin, BP 156X, Grenoble 38042, France.

出版信息

Materials (Basel). 2016 Jul 19;9(7):588. doi: 10.3390/ma9070588.

Abstract

SrMoMO (M = Fe and Cr, x = 0.1 and 0.2) oxides have been recently described as excellent anode materials for solid oxide fuel cells at intermediate temperatures (IT-SOFC) with LSGM as the electrolyte. In this work, we have improved their properties by doping with aliovalent Mg ions at the B-site of the parent SrMoO₃ perovskite. SrMoMgO (x = 0.1, 0.2) oxides have been prepared, characterized and tested as anode materials in single solid-oxide fuel cells, yielding output powers near 900 mW/cm at 850 °C using pure H₂ as fuel. We have studied its crystal structure with an "in situ" neutron power diffraction (NPD) experiment at temperatures as high as 800 °C, emulating the working conditions of an SOFC. Adequately high oxygen deficiencies, observed by NPD, together with elevated disk-shaped anisotropic displacement factors suggest a high ionic conductivity at the working temperatures. Furthermore, thermal expansion measurements, chemical compatibility with the LSGM electrolyte, electronic conductivity and reversibility upon cycling in oxidizing-reducing atmospheres have been carried out to find out the correlation between the excellent performance as an anode and the structural features.

摘要

SrMoMO(M = Fe和Cr,x = 0.1和0.2)氧化物最近被描述为以LSGM为电解质的中温固体氧化物燃料电池(IT - SOFC)的优异阳极材料。在这项工作中,我们通过在母体SrMoO₃钙钛矿的B位掺杂异价Mg离子来改善其性能。制备了SrMoMgO(x = 0.1,0.2)氧化物,对其进行了表征,并在单固体氧化物燃料电池中作为阳极材料进行了测试,在850℃下使用纯H₂作为燃料时产生的输出功率接近900 mW/cm²。我们通过在高达800℃的温度下进行“原位”中子粉末衍射(NPD)实验来研究其晶体结构,模拟SOFC的工作条件。通过NPD观察到足够高的氧缺陷,以及升高的盘状各向异性位移因子表明在工作温度下具有高离子电导率。此外,还进行了热膨胀测量、与LSGM电解质的化学相容性、电子电导率以及在氧化还原气氛中循环时的可逆性研究,以找出作为阳极的优异性能与结构特征之间的相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f541/5456869/d02d8c128903/materials-09-00588-g001.jpg

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