首页> 外文期刊>International journal of hydrogen energy >High conductivity and high density proton conducting Ba1-xSrxCe0.5Zr0.35Y0.1Sm0.05O3-delta (x=0.5, 0.7, 0.9, 1.0) perovskites for IT-SOFC
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High conductivity and high density proton conducting Ba1-xSrxCe0.5Zr0.35Y0.1Sm0.05O3-delta (x=0.5, 0.7, 0.9, 1.0) perovskites for IT-SOFC

机译:适用于IT-SOFC的高电导率和高质子传导性Ba1-xSrxCe0.5Zr0.35Y0.1Sm0.05O3-δ(x = 0.5,0.7,0.9,1.0)钙钛矿

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Solid oxide fuel cell (SOFC) has been achieving attention in term of possibility in variety of fuels. Proton conductor enhanced conventional oxide conducting electrolyte has become more and more interesting particularly in intermediate operating temperature. Combination of doped BaCeO3 and BaZrO3 by doping Sr, Y and Sm was studied as the series of Ba1-xSrxCe0.5Zr0.35Y0.1Sm0.05O3-delta (BSCZYSm) by varying composition x = 0.5, 0.7, 0.9 and 1.0. The X-ray analysis reveals right-shifted peaks due to changing in unit cell volume. The cell parameters and density decreased with increasing Sr content. Rietveld refinement shows that all compositions crystallize in the cubic symmetry in the space group Pm-3m. Thermogravimetric analysis on dried and hydrated samples under nitrogen show significant weight change to prove the proton uptake at higher temperature. Scanning electron microscopy shows that the density is higher than 90% for all samples. BSCZYSm with x = 0.5 shows the highest conductivity in wet argon condition which is 2.391 x 10(-3) S cm(-1) at 700 degrees C. Particle size of materials were examined and reveal average diameter of 5.8 mu m approximately. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:就各种燃料的可能性而言,固体氧化物燃料电池(SOFC)已引起关注。质子导体增强的常规氧化物导电电解质已经变得越来越令人感兴趣,特别是在中间操作温度下。以Ba1-xSrxCe0.5Zr0.35Y0.1Sm0.05O3-δ系列(BSCZYSm)为例,通过改变组成x = 0.5、0.7、0.9和1.0,研究了掺杂Sr,Y和Sm的掺杂BaCeO3和BaZrO3的组合。 X射线分析显示由于晶胞体积的变化而导致的峰右移。电池参数和密度随Sr含量的增加而降低。 Rietveld精炼显示,所有成分在空间群Pm-3m中均以立方对称结晶。在氮气下对干燥和水合样品的热重分析表明重量发生了显着变化,以证明在较高温度下质子的吸收。扫描电子显微镜显示,所有样品的密度均高于90%。 x = 0.5的BSCZYSm在700摄氏度的湿氩条件下显示出最高的电导率,为2.391 x 10(-3)S cm(-1)。检查了材料的粒径,发现平均直径约为5.8μm。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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