首页> 外文期刊>Journal of power sources >Investigate the proton uptake process of proton/oxygen ion/hole triple conductor BaCo_(0.4)Fe_(0.4)Zr_(0.1)Y_(0.1)O_(3-δ) by electrical conductivity relaxation
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Investigate the proton uptake process of proton/oxygen ion/hole triple conductor BaCo_(0.4)Fe_(0.4)Zr_(0.1)Y_(0.1)O_(3-δ) by electrical conductivity relaxation

机译:通过电导率松弛研究质子/氧离子/空穴三导体BaCo_(0.4)Fe_(0.4)Zr_(0.1)Y_(0.1)O_(3-δ)的质子吸收过程

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摘要

The proton surface uptake kinetics of proton, oxygen ion and hole triple conductor BaCo0.4Fe0.4Zr0.1Y0.1O3-delta (BCFZY) is investigated by electrical conductivity relaxation method (ECR). The proton uptake process is controlled by changing the water partial pressure at constant temperature. And the proton concentration in BCFZY bulk could be calculated by the conductivity change value (Delta sigma: 0.063 Scm(-1) at 500 degrees C) from 0% to 10% pH(2)O. The proton surface exchange coefficient, kappa(delta) is 3.85 x 10(-6) cm(-1) at 500 degrees C, derived from fitting the relaxation curve. It is also found the proton uptake reaction rate would be enhanced under higher oxygen partial pressure. And the kappa(delta) value could be greatly enhanced by one order of magnitude with doped ceria coated on BCFZY surface, which also proved that the proton uptake kinetics is limited by the surface exchange step. In all, this work provides an effective way to measure the proton surface exchange kinetic for proton conductive cathode.
机译:通过电导率弛豫法(ECR)研究了质子,氧离子和空穴三重导体BaCo0.4Fe0.4Zr0.1Y0.1O3-δ(BCFZY)的质子表面吸收动力学。通过在恒定温度下改变水分压来控制质子吸收过程。 BCFZY主体中的质子浓度可以通过从0%到10%pH(2)O的电导率变化值(500摄氏度下的Delta sigma:0.063 Scm(-​​1))来计算。质子表面交换系数kappa(δ)在500摄氏度时为3.85 x 10(-6)cm(-1),这是根据拟合松弛曲线得出的。还发现在较高的氧分压下质子吸收反应速率将提高。在BCFZY表面涂覆掺杂的二氧化铈可以将kappaδ值提高一个数量级,这也证明了质子吸收动力学受到表面交换步骤的限制。总之,这项工作为测量质子传导性阴极的质子表面交换动力学提供了一种有效的方法。

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