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Activation Energy for Conduction in Y2O3-Stabilized Zirconia
Y2O3稳定ZrO2材料的电导活化能

Keywords: ionic conductivity,activation energy for conduction,defect association,ZrO2-based solid electrolytes
ZrO2基固体电解质
,离子电导率,电导活化能,缺陷缔合,二氧化锆,氧化钇

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Abstract:

The ac conductivity spectra were measured in the temperature range from 313 to 473K for a Y2O3-stabilized ZrO2 (YSZ). Then the dc conductivity was deduced and its temperature dependence analyzed. It was shown that, at low temperatures, the activation energy for conduction in YSZ increases with increasing temperature. This experimental phenomenon is rather different with those observed previously in the high temperature range in which the activation energy was found to decrease with increasing temperature. Based on the analyses of the mechanisms for disassociation and migration of oxygen vacancies in the materials, a reasonable explanation for the temperature dependence of the activation energy for conduction in YSZ was proposed.

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