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首页> 外文期刊>Journal of electroceramics >Resistance variation in donor-doped PZT stacks with Cu inner electrodes under high field stress
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Resistance variation in donor-doped PZT stacks with Cu inner electrodes under high field stress

机译:高场应力下含铜内电极的施主掺杂PZT叠层的电阻变化

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Changes of the resistance of donor-doped lead zirconate titanate (PZT) under high voltages were investigated at temperatures from 350 to 500℃ in different gas atmospheres. Measurements on individual ceramic layers (about 75 μm thickness) of PZT multilayer stacks with Cu inner electrodes allowed numerous experiments on nominally identical PZT material. Under high fields, the conductivity decreased significantly on time scales much longer than needed for capacitor charging. At 350℃, for example, decay times of several 1000 s were found. The time constant of this conductivity decay depends exponentially on temperature with activation energies of about 1.3 eV in air. After interrupting the field stress, thermally activated (ca. 1.1 eV) relaxation of the conductivity was found on an even longer time scale. The results are interpreted in terms of oxygen vacancy motion under high fields (stoichiometry polarization) and diffusive relaxation. The importance of oxygen migration despite donor doping is attributed to the high PbO volatility of PZT which readily leads to significant oxygen deficiency. Oxygen diffusion coefficients are estimated.
机译:在350〜500℃的温度,不同气体气氛下,研究了高压下施主掺杂锆钛酸铅(PZT)的电阻变化。对带有铜内电极的PZT多层堆叠的单个陶瓷层(厚度约75μm)进行测量,可以对名义上相同的PZT材料进行大量实验。在高电场下,电导率在时间尺度上显着下降,比电容器充电所需的时间长得多。例如,在350℃下,衰减时间为几千秒。这种电导率衰减的时间常数与空气的活化能约为1.3 eV的温度成指数关系。中断场应力后,发现在更长的时间范围内热激活(约1.1 eV)的电导率松弛。根据高场(化学计量极化)下的氧空位运动和扩散弛豫来解释结果。尽管施主掺杂,氧气迁移的重要性还是归因于PZT的高PbO挥发性,这容易导致明显的缺氧。估计氧气的扩散系数。

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