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首页> 外文期刊>Bulletin of the Korean Chemical Society >Active Reaction Sites and Oxygen Reduction Kinetics on La1-xSrxMnO3+¥?(x=0.1-0.4)/YSZ (Yttria-Stabilized Zirconia) Electrodes for Solid Oxide Fuel Cells
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Active Reaction Sites and Oxygen Reduction Kinetics on La1-xSrxMnO3+¥?(x=0.1-0.4)/YSZ (Yttria-Stabilized Zirconia) Electrodes for Solid Oxide Fuel Cells

机译:固体氧化物燃料电池La1-xSrxMnO3 + ¥?(x = 0.1-0.4)/ YSZ(氧化钇稳定的氧化锆)电极上的活性反应位和氧还原动力学

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Active reaction sites and electrochemical O2 reduction kinetics on La1-xSrxMnO3+ヤ (x=0.1-0.4)/YSZ (yttria-stabilized zirconia) electrodes are investigated in the temperature range of 700-900 ∩ at Po2=10-3-0.21 atm. Results of the steady-state polarization measurements, which are formulated into the Butler-Volmer formalism to extract transfer coefficient values, lead us to conclude that the two-electron charge transfer step to atomically adsorbed oxygen is rate-limiting. The same conclusion is drawn from the PO2-dependent ○ impedance measurements, where the exponent m in the relationship of Io (exchange current density) ○ Po2m is analyzed. Chemical analysis is performed on the quenched Mn perovskites to estimate their oxygen stoichiometry factors (8) at the operating temperature (700-900 ∩). Here, the observed ヤ turns out to become smaller as both the Sr-doping contents (x) and the measured temperature increase. A comparison between the 8 values and cathodic activity of Mn perovskites reveals that the cathodic transfer coefficients (メc) for oxygen reduction reaction are inversely proportional to ヤ whereas the anodic ones (メa) show the opposite trend, reflecting that the surface oxygen vacancies on Mn perovskites actively participate in the O2 reduction reaction. Among the samples of x= 0.1-0.4, the manganite with x=0.4 exhibits the smallest 8 value (even negative), and consistently this electrode shows the highest メc and the best cathodic activity for the oxygen reduction reaction.
机译:研究了La1-xSrxMnO3 +ヤ(x = 0.1-0.4)/ YSZ(氧化钇稳定的氧化锆)电极在Po2 = 10-3-0.21 atm的温度范围内的活性反应位点和电化学O2还原动力学。稳态极化测量的结果被公式化为Butler-Volmer形式来提取转移系数值,这使我们得出结论,到原子吸附的氧的两电子电荷转移步骤是限速的。从依赖PO2的○阻抗测量得出相同的结论,其中分析了Io(交换电流密度)○Po2m的关系中的指数m。在工作温度(700-900∩)下,对淬火的钙钛矿进行化学分析,以估算其氧化学计量系数(8)。在此,观察到的-随着Sr掺杂量(x)和测量温度的升高而变小。 Mn钙钛矿的8个值与阴极活性之间的比较表明,氧还原反应的阴极转移系数(メc)与in成反比,而阳极钙钛矿的阳极转移系数(メa)则呈现相反的趋势,反映出表面氧空位Mn钙钛矿上积极参与O2还原反应。在x = 0.1-0.4的样品中,x = 0.4的锰矿表现出最小的8值(甚至是负值),并且该电极始终显示出最高的andc和对氧还原反应的最佳阴极活性。

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