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Electrical Characterization of Pd-Doped CMAS-TiO_2 Glass-Ceramics

机译:Pd掺杂CMAS-TiO_2微晶玻璃的电学表征

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摘要

Electrical characterization was performed on Pd-bearing and Pd-free, electrically conductive glass-ceramics in the CMAS-TiO_2 system. AC impedance plots clearly revealed both grain-core and grain-boundary semicircles. Grain boundaries had a lower magnitude of conductivity but a similar activation energy to grain-core conduction except when Pd was present, for which much lower activation energies were indicated. The lack of any frequency (f) dependence of conductivity for f< 100 Hz, while using noble metal electrodes, suggests the conduction was dominantly electronic in origin in these glass-ceramics. Time-dependent polarization measurements showed no change in electrical current over several days, also consistent with this conclusion. Overall, the temperature dependence of the conductivity was relatively low over a very large temperature range, but quite complex. The appearance of a sharp minimum in conduction seen near 600℃ suggests some type of transition occurred with our glass-ceramics, possibly related to semiconductor-to-metal transitions seen with some transition-metal crystals. The available data suggest that Pd did have some effect on grain-boundary conduction, but that a percolating Pd network was not formed.
机译:在CMAS-TiO_2系统中,对含Pd和无Pd的导电玻璃陶瓷进行了电学表征。交流阻抗图清楚地显示了晶核和晶界半圆。晶界具有较低的电导率,但与激活的能量相似,除了当存在Pd时,其激活能与晶核传导相似。当使用贵金属电极时,对于f <100 Hz,缺乏任何频率(f)的电导率依赖性,这表明在这些玻璃陶瓷中,导电主要是电子起源的。随时间变化的极化测量显示几天内电流没有变化,这也与该结论一致。总体而言,电导率的温度依赖性在很大的温度范围内相对较低,但相当复杂。在600℃附近出现了一个明显的最小导通现象,这表明我们的玻璃-陶瓷发生了某种类型的转变,这可能与某些过渡金属晶体所见的半导体到金属的转变有关。现有数据表明,Pd确实对晶界传导有一定影响,但并未形成渗透的Pd网络。

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