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Electric and electrochemical properties of catalytically active oxygen electrode materials

机译:催化活性氧电极材料的电学和电化学性质

摘要

The electrical conductivity has been investigated of some oxygen ion and mixed conducting materials. Electrodes are prepared from thin sputtered layers of these oxides combined with a small Au or Pt strip. The kinetics of the oxygen reaction has been studied for temperatures of 820–1020 K and PO2 values of 10−4 - 1 atm. respectively.udHighest oxygen ion conductivities are found in solid solutions of 0.7 Bi2O3−0.3 Tb2O3.5 followed by 0,7 CeO2 - 0.3Tb2O3.5 (CT-30) and (TbxGd1−x) with pyrochlore structure and x=0 (TGZ-0). Highest, p-type, electronic conductivities are found in CT-30 and TGZ with x=1. TGZ-0 was used in all experiments as the solid electrolyte.udCombined current-overvoltage (ν) and impedance measurements show that with Au strips the nature of the oxidic materials has a pronounced effect on especially the cathodic polarization, the effect being larger with larger ν. Introduction of p-type conductivity does not decrease the electrode resistance. The Butler-Volmer equation is obeyed with effective cathodic and anodic transfer coefficients close to 0.5 and 1.5 respectively while the effective exchange current varies as the 0.5 power of PO2. These results can be interpreted by a mechanism where charge transfer in the metal-oxide region is rate controlled by surface diffusion on the oxide.
机译:已经研究了一些氧离子和混合导电材料的电导率。电极是由这些氧化物的薄溅射层与小的Au或Pt带结合而成的。已经研究了温度为820-1020 K和PO2值为10-4-1 atm的氧气反应的动力学。 ud最高的氧离子电导率在0.7 Bi2O3-0.3 Tb2O3.5的固溶体中发现,然后是具有烧绿石结构且x = 0(0.7的CeO2-0.3Tb2O3.5(CT-30)和(TbxGd1-x)) TGZ-0)。在CT-30和TGZ中,x = 1时发现了最高的p型电子电导率。 TGZ-0在所有实验中均作为固体电解质使用。更大的ν。引入p型电导率不会降低电极电阻。遵循Butler-Volmer方程,有效的阴极和阳极转移系数分别接近0.5和1.5,而有效的交换电流随PO2的0.5次幂而变化。这些结果可以通过一种机制来解释,其中通过在氧化物上的表面扩散来控制金属氧化物区域中的电荷转移。

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