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Impedance Spectroscopy of Mg-Partially Stabilized Zirconia and Cubic Phase Decomposition

机译:镁部分稳定的氧化锆的阻抗谱和立方相分解

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摘要

Electrical conductivity measurements were carried out by impedance spectroscopy on nominally pure and magnesia-doped zirconia in the 3-13.7 mol% concentration range. In the partial-stabilization field, the impedance diagrams show the characteristic grain and grain boundary semicircles, as well as an extra arc at intermediate frequencies. This extra arc is interpreted as a characteristic of partial blocking of electrolyte conduction by the monoclinic grains. As usual, the resistances associated with the blocking processes exhibit activation energies slightly higher than the bulk resistance. All these activation energies increase with the MgO content. The cubic phase decomposition can easily and accurately be monitored by impedance spectroscopy.
机译:通过阻抗光谱法在3-13.7 mol%浓度范围内对标称纯净和氧化镁掺杂的氧化锆进行电导率测量。在局部稳定场中,阻抗图显示了特征晶粒和晶界半圆,以及中频处的额外电弧。这种额外的电弧被解释为单斜晶晶粒部分阻止电解质传导的特征。通常,与阻挡过程相关的电阻表现出的活化能略高于体电阻。所有这些活化能都随着MgO含量的增加而增加。立方相分解可以通过阻抗谱轻松而准确地监控。

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