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Influence of Lanthanum Doping on Structural and Electrical/Electrochemical Properties of Double Perovskite Sr2CoMoO6 as Anode Materials for Intermediate-Temperature Solid Oxide Fuel Cells

机译:镧掺杂对双钙钛矿SR2COMOO6作为中温固体氧化物燃料电池阳极材料的结构和电化/电化学性能的影响

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摘要

Lanthanum (La3+)-doped double perovskites Sr2CoMoO6 (Sr2-xLaxCoMoO6, 0.00 <= x <= 0.03) were synthesized via the citrate-nitrate autocombustion route. The Reitveld refinement analysis of X-ray diffraction reveals the tetragonal symmetry as the main phase with space group I4/m and also confirms the presence of some peaks corresponding to extra phase SrMoO4. The SEM micrograph images reflect that grains are in irregular shape and sizes for all samples. Average grain size gradually decreases with the increase of the SrMoO4 phase. The X-ray photoelectron spectroscopy (XPS) analysis confirms the presence of mixed valence states of Mos(+)/Mo6+, Co2+/Co3+, and O-lattice/O-chemisorbed/O-physisorbed species. Coefficient of thermal expansion (CTE) analysis shows that the particular composition Sr1.97La0.03CoMoO6 has the lowest CTE value among the compositions studied. The electrical conductivity of Sr2CoMoO6 is enhanced effectively by doping La at Sr sites. The measured area-specific resistance (ASR) for the composition Sr1.97La0.03CoMoO6 (SLCM03) is found to be appreciably low, similar to 0.053 Ohm cm(-2) at 800 degrees C. The obtained highest electrical conductivity with the lowest activation energy and low ASR value for the composition Sr1.97La0.03CoMoO6 encompasses it as a promising candidate for anode material in the intermediate-temperature solid oxide fuel cell (IT-SOFC) application.
机译:镧(LA3 +) - 掺杂的双钙质SR2COMOO6(SR2-XLAXCOMOO6,通过柠檬酸硝酸盐自动变阻途径合成。 X射线衍射的Reitveld细化分析显示了与空间组I4 / m的主相的四字体对称性,并确认存在对应于额外阶段SRMoo4的一些峰。 SEM显微照片图像反映晶粒形状不规则,适用于所有样品。随着SRMOO4相的增加,平均晶粒尺寸逐渐降低。 X射线光电子能谱(XPS)分析证实了MOS(+)/ MO6 +,CO2 + / CO3 +,和O-晶格/ O-化学层次的混合价态的存在。热膨胀系数(CTE)分析表明,特定组合物SR1.97LA0.03COMOO6在研究的组合物中具有最低的CTE值。 SR2Comoo6的电导率通​​过SR位点掺杂La有效增强。发现组合物SR1.97LA0.03COMOOO6(SLCM03)的测量区域特异性电阻(ASR)明显低,类似于800℃的0.053欧姆(-2)。获得最低激活的最高电导率组合物SR1.97LA0.03COMOO6的能量和低ASR值包括中间温度固体氧化物燃料电池(IT-SOFC)应用中的阳极材料的有希望的候选者。

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