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Performance analysis of cobalt-based cathode materials for solid oxide fuel cell

机译:固体氧化物燃料电池基于钴的阴极材料的性能分析

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The area specific resistance (ASR) characteristics of Ln1-xSrxM'1-yM"yO3-δ (Ln=Lanthanides, M' and M": transition metal such as Co and Fe), Sm0.5Sr1.5Co1-yNiyO4-δ and Sm0.5Sr1.5Co1-yFeyO4-δ oxides were investigated as cathode materials for intermediate temperature operating solid oxide fuel cell (IT-SOFC) application.As an effect of Sr substitution in A-site of perovskite, ASR of Nd0.5Sr0.5CoO3(NSC55) was 0.14 ft cm2 at 700°C. Sm0.5Sr0.5CoO3-δ (SSC55) on Ce0.9Gd0.1O2-δ(CGO91) and Ce0.8Sm0.2O2-δ(CSO82) showed the lowest ASR as 0.10 Ω cm2 and 0.085 Ω cm2 at 700°C among various perovskite compositions in this study. ASR of B-site substituted Pr0.3Sr0.7Co0.3Fe0.7O3-δ (PSCF3737) in the Pr0.3Sr0.7Co1-yFeyO3-δ was about 0.13 Ω cm2 at 700°C. Comparing ASR of SSC55 as a perovskite structure with the value of Sm0.5Sr1.5Co1-yFeyO4-δ (y=0, 0.3, 0.5 and 0.7) as a spinel structure, the ASR of SSC55 was 0.085 ft cm2. However, the value of Sm0.5Sr1.5Co1-yFeyO4-δ(y=0,0.3,0.5 and 0.7) was much higher than SSC55 at 700°C. In XPS analyses, the atomic percentage values of PSC55 and PSC37 were 83.5, and 83.1%. However, the value of SrCoO3-δ was 50.2%. The results claim that more oxygen sites including oxygen vacancies on the surface of PSC55 and PSC37 exist than that of SrCoO3-δ.
机译:LN1-XSRXM'1-YM“YO3-δ(LN =镧​​,M”和M“:过渡金属,如CO和Fe),SM0.5SR1.5Co1-YNIYO4-δ和研究了SM0.5SR1.5CO1-YFEMEO4-δ氧化物作为中间温度操作固体氧化物燃料电池(IT-SOFC)的阴极材料进行研究。SR替代在ND0.5SR0.5COO3的ASR的A-TEAT的SR替代品的效果(NSC55)在700℃下为0.14英尺Cm 2。 CE0.9GD0.1O2-δ(CGO91)和CE0.8SM0.2O2-δ(CO82)上的SM0.5SR0.5COO3-Δ(SSC55)显示最低ASR为0.10Ωcm2和0.085Ωcm2,各种700°C本研究中的钙钛矿组合物。在PR0.3SR0.7CO1-YFEMEYO3-δ中,B-位点的ASR取代的PR0.3SR0.7CO0.3FE0.7O3-Δ(PSCF3737)在700℃下为约0.13Ωcm2。将SSC55的ASR与SM0.5SR1.5CO1-YFEMEYO4-Δ(Y = 0,0.3,0.5和0.7)的值进行钙钛矿结构作为尖晶石结构,SSC55的ASR为0.085英尺CM2。但是,SM0.5SR1.5Co1-YFeyO4-yfeyO4-Δ(Y = 0.0.3,0.5和0.7)的值高于700℃的SSC55。在XPS分析中,PSC55和PSC37的原子百分比值为83.5和83.1%。然而,SrCOO3-δ的值为50.2%。结果要求更多的氧气位点在PSC55和PSC37表面上存在氧空位,而不是SRCOO3-δ的氧气空位。

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