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The mixed ionic and electronic conductivity of CaZrO3 with cation nonstoichiometry and oxygen partial pressure

机译:CaZrO3的阳离子和非化学计量比及氧分压的混合离子电导率

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The electrical conductivities of Ca1-xZrO3-delta (0 <= x <= 0.10) ceramics were measured as a function of nonstoichiometry (x) and oxygen partial pressure (Po-2) using impedance spectroscopy between 700 degrees C and 1100 degrees C. The stoichiometric CaZrO3 was a mixed ionic and electronic (hole) conductor in a high Po-2 region. It was an ionic conductor in a low Po-2 region. The analysis of impedance spectra revealed that the contributions of the grain and the grain boundary to the total conductivity were nearly constant independent of Po-2 at 700 degrees C. In addition, the grain boundary mainly determined the electrical conductivity at 700 degrees C. When the Ca deficiency (x) increased up to 0.02, the electrical conductivity rapidly decreased with x due mostly to the decrease in the grain boundary conductivity.
机译:使用700摄氏度至1100摄氏度之间的阻抗谱法,测量了Ca1-xZrO3-δ(0 <= x <= 0.10)陶瓷的电导率与非化学计量法(x)和氧分压(Po-2)的关系。化学计量的CaZrO3是高Po-2区的离子和电子(空穴)混合导体。它是低Po-2区域的离子导体。阻抗谱分析表明,在700摄氏度时,晶粒和晶界对总电导率的贡献几乎与Po-2无关。此外,晶界主要决定了在700摄氏度时的电导率。 Ca不足(x)增加到0.02,随着x的增加,电导率迅速下降,主要原因是晶界电导率降低。

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