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Local electrical and dielectric properties of nanocrystalline yttria-stabilized zirconia

机译:纳米晶钇稳定氧化锆的局部电学和介电性能

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摘要

Grain core and grain boundary electrical and dielectric properties of nanocrystalline yttria-stabilized zirconia (YSZ) were analyzed using a novel nano-Grain Composite Model (n-GCM). Partially sintered pellets with average grain sizes ranging from 10 to 73 nm were analyzed over a range of temperatures using AC impedance spectroscopy (AC-IS). Local grain core and grain boundary conductivities, grain boundary dielectric constants, and effective grain boundary space charge widths were determined from the fitted circuit parameters. Required grain core dielectric constant data were provided by AC-IS measurements of single crystal YSZ over a range of temperatures. The local grain core conductivity of all the nanocrystalline samples was slightly decreased with respect to that of microcrystalline YSZ. Conversely, the local grain boundary conductivity was enhanced up to an order of magnitude compared to microcrystalline YSZ. At the nanoscale, there was a noticeable increase in local grain boundary dielectric constant versus single crystal values at the same temperature.
机译:使用新型纳米颗粒复合模型(n-GCM)分析了纳米晶氧化钇稳定的氧化锆(YSZ)的晶核和晶界电和介电性能。使用交流阻抗谱(AC-IS)在一定温度范围内分析了平均粒径为10至73 nm的部分烧结的球团。局部晶核和晶界电导率,晶界介电常数和有效晶界空间电荷宽度由拟合电路参数确定。通过在一定温度范围内对单晶YSZ进行AC-IS测量,可以提供所需的晶核介电常数数据。相对于微晶YSZ,所有纳米晶样品的局部晶核电导率均略有降低。相反,与微晶YSZ相比,局部晶界电导率提高了一个数量级。在纳米级,在相同温度下,相对于单晶值,局部晶界介电常数显着增加。

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