首页> 外文期刊>Electrochimica Acta >Kinetic study on the role of an LSGMC5 interlayer in improving the performance of Sm{sub}0.5Sr{sub}0.5CoO{sub}3-La{sub}0.8Sr{sub}0.2Ga{sub}0.8Mg{sub}0.15 (LSGMC5)/LSGMC5 interface
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Kinetic study on the role of an LSGMC5 interlayer in improving the performance of Sm{sub}0.5Sr{sub}0.5CoO{sub}3-La{sub}0.8Sr{sub}0.2Ga{sub}0.8Mg{sub}0.15 (LSGMC5)/LSGMC5 interface

机译:LSGMC5中间层在改善Sm {sub} 0.5Sr {sub} 0.5CoO {sub} 3-La {sub} 0.8Sr {sub} 0.2Ga {sub} 0.8Mg {sub} 0.15的性能中的作用的动力学研究(LSGMC5)/ LSGMC5接口

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摘要

The kinetics of oxygen reduction over various Sm{sub}0.5Sr{sub}0.5CoO{sub}3(SSC)-La{sub}0.8Sr{sub}0.2Ga{sub}0.8Mg{sub}0.15Co{sub}0.15O{sub}3 (LSGMC5)/LSGMC5 (interlayer)/LSGMC5 (electrolyte) assemblies were studied, which were essential to find the role of an interlayer in improving the performance of an electrode/electrolyte interface, Two major arcs were identified in the impedance spectra at near equilibrium conditions. The reciprocal of the electrode resistance corresponding to the high frequency arc showed a P{sub}(O{sub}2) dependency about 0.5 at 1073 K and decreased to one-fourth at 873 K, suggesting that the rate-determining step (rds) changed from the dissociative adsorption of oxygen or diffusion of adsorbed oxygen atoms to charge transfer The reciprocal of the electrode resistance corresponding to the low frequency arc showed a P{sub}(O{sub}2) dependency about 1, suggesting an rds involving the gas diffusion of oxygen. DC polarization curves of various assemblies agreed well with the Butler-Volmer equation. Both the cathodic and anodic charge transfer coefficients were about 1, and the P{sub}(O{sub}2) dependencies of the exchange current densities were about 0.25, especially at low temperatures. The characteristics under polarization corresponded to a charge transfer process. The introduction of an LSGMC5 interlayer between the SSC-LSGMC5 electrode and LSGMC5 electrolyte did not change the reaction mechanism, and the role of the interlayer was to increase the number of active sites for oxygen reduction.
机译:各种Sm {sub} 0.5Sr {sub} 0.5CoO {sub} 3(SSC)-La {sub} 0.8Sr {sub} 0.2Ga {sub} 0.8Mg {sub} 0.15Co {sub}上的氧还原动力学对0.15O {sub} 3(LSGMC5)/ LSGMC5(中间层)/ LSGMC5(电解质)组件进行了研究,这对于发现中间层在改善电极/电解质界面性能方面的作用至关重要。在接近平衡条件下的阻抗谱。对应于高频电弧的电极电阻的倒数显示在1073 K时P {sub}(O {sub} 2)依赖性约为0.5,而在873 K时降低至四分之一,表明速率确定步骤(rds )从氧的解离吸附或吸附的氧原子的扩散转变为电荷转移。对应于低频电弧的电极电阻的倒数显示P {sub}(O {sub} 2)依赖性约为1,表明rds涉及氧气的气体扩散。各种组件的DC极化曲线与Butler-Volmer方程非常吻合。阴极和阳极电荷转移系数均约为1,交换电流密度的P {sub}(O {sub} 2)依赖性约为0.25,尤其是在低温下。极化下的特性对应于电荷转移过程。在SSC-LSGMC5电极和LSGMC5电解质之间引入LSGMC5中间层不会改变反应机理,该中间层的作用是增加用于氧还原的活性位点的数量。

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