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Conductivity-permittivity relations in oxygen deficient CaCu3Ti4O12

机译:缺氧中的电导率介质关系Cacu3Ti4O12

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The correlation between conductance, capacitance and oxygen content is discussed in the colossal dielectric permittivity perovskite oxide CaCu3Ti4O12. We found an unusual positive conductivity-permittivity relation which is very sensitive to the oxygen content. In particular, we ascribe the oxygen content sensitivity of both the capacitance and the conductance to a repositioning of charges on oxygen vacancy related defects and/or on the migration of the defects themselves. We find that in the charge repositioning process a Jonscher type of global conduction is accompanied by a Debye-type local electronic relaxation in and between the boundaries of a specific grain. A closer investigation of these processes suggest that the local polaronic relaxation of charges on oxygen vacancy related defects is mainly responsible for the large dielectric constant of CaCu3Ti4O12 and also for the ac conduction at low to medium temperatures.
机译:在巨粒介电介电常钙钛矿CaCu3Ti4O12中讨论了电导,电容和氧含量之间的相关性。 我们发现一种不寻常的正电导率介电常数关系,对氧含量非常敏感。 特别地,我们将电容和电导的氧气含量灵敏度归类为重新定位氧气空位相关缺陷和/或缺陷本身的迁移。 我们发现,在电荷重新定位过程中,追逐型全局传导的Jonscher类型伴随着特定谷物的边界之间的德语型本地电子放松。 更接近对这些过程的研究表明,氧空位相关缺陷的局部极性弛豫主要负责CaCu3Ti4O12的大介电常数,以及在低至中温度下的AC导通。

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