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Synthesis and properties of LaNi1−x Fe x O3−δ as cathode materials in SOFC

机译:SOFC正极材料LaNi1-x Fe x O3-δ的合成及性能

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摘要

The synthesis of LaNi1− x Fe x O3−δ (LNF) perovskites with x = 0.0–1.0, for use as cathode materials for an IT-SOFC, was investigated using four combustion methods, Water Citrate (WC), Modified Water Citrate (MWC), Nitric Citrate (NC), and Modified Nitric Citrate (MNC). The structures and homogeneities of the synthesized powders were examined using an XRD, and the particle sizes were examined using an SEM and a particle size analyzer. All four combustion methods gave the single phase perovskites with the same structure. The main difference was shown in a particle size that the smallest to the largest sizes were obtained from MNC, MWC, NC, and WC, respectively. In this LNF series, as x is 0–0.5, the crystal structure is cubic and rhombohedral at the calcination temperature of 700 and 900 °C, respectively. Further investigation indicated that the cubic structure changed to rhombohedral structure at 900 °C, and was stable up to 1200 °C. As x is 0.6–1.0, the crystal structure is in orthorhombic phase when calcined between 700 and 1000 °C. This orthorhombic phase decomposed above 1100 °C. From the XRD and SEM–EDX results, LaNi0.6Fe0.4O3−δ (LNF64) has a good chemical compatibility with 8YSZ from room temperature up to 900 °C. In addition, its thermal expansion coefficient is 13.2 × 10−6 K−1 close to that of 8 mol% Y2O3 (8YSZ). Therefore, LNF64 also has a good physical compatibility with 8YSZ.
机译:使用四次燃烧研究了x = 0.0–1.0的LaNi1-x Fe x O3-δ(LNF)钙钛矿的合成,用作IT-SOFC的阴极材料。方法包括柠檬水(WC),柠檬水(MWC),柠檬酸(NC)和柠檬酸(MNC)。使用XRD检查合成粉末的结构和均质性,并使用SEM和粒度分析仪检查粒度。所有四种燃烧方法均得到具有相同结构的单相钙钛矿。主要区别在于粒径,分别从MNC,MWC,NC和WC获得了最小到最大的粒径。在该LNF系列中,当x为0-0.5时,在煅烧温度为700和900°C时,晶体结构分别为立方和菱形。进一步的研究表明,立方结构在900°C时变为菱面体结构,并在1200°C时稳定。当x为0.6–1.0时,在700至1000°C之间煅烧时,晶体结构处于正交晶相。斜方晶相在1100°C以上分解。根据XRD和SEM-EDX结果,LaNi0.6 Fe0.4 O3-δ(LNF64)在室温高达900°C时与8YSZ具有良好的化学相容性。另外,其热膨胀系数为13.2×10-6 K-1 接近于8 mol%的Y2 O3 (8YSZ)。因此,LNF64与8YSZ也具有良好的物理兼容性。

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  • 来源
    《Journal of Materials Science》 |2011年第20期|p.6500-6507|共8页
  • 作者单位

    Department of Chemistry, Faculty of Science, Chulalongkorn University, Bangkok, 10330, Thailand;

    Department of Chemistry, Faculty of Science, Chulalongkorn University, Bangkok, 10330, Thailand;

    National Metal and Materials Technology Center, Pathumthani, 12120, Thailand;

    Department of Science, Faculty of Science and Technology, Bansomdejchaopraya Rajabhat University, Bangkok, 10600, Thailand;

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