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Grain Size Effect in the Electrical Properties of Nanostructured Functional Oxides through Pressure Modification of the Spark Plasma Sintering Method

机译:通过火花等离子体烧结法的压力改变,颗粒尺寸效应纳米结构官能氧化物的电性能

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Through the use of a high-pressure modification of the spark plasma sintering method, it was possible to consolidate functional oxides (yttria- stabilized zirconia and doped ceria) to high densities and retain a grain size of < 20 nm. The role of the pressure on densification and on the grain size of the sintered samples was demonstrated. The pressure had a marked effect on density at relatively low temperature but an insignificant effect at relatively high temperature. It was found that when prepared with such small grain sizes, these oxides conduct protonically even at temperatures as low as room temperature. The dependence of the protonic conductivity is stronger dependence on grain size than what can be anticipated from a geometric consideration based on an increase in grain boundary area. This observation strongly suggests that factors other than an increase in grain boundary area play a role, a Consideration that is being further investigated.
机译:通过使用火花等离子体烧结方法的高压改性,可以将功能性氧化物(yTTraia-稳定的氧化锆和掺杂的二氧化铈)固化为高密度并保留<20nm的晶粒尺寸。证明了压力对致密化和烧结样品晶粒尺寸的作用。压力对密度在相对低的温度下具有显着的影响,但在相对较高的温度下具有微不足道的效果。发现,当用这种小颗粒尺寸制备时,即使在低至室温的温度下,这些氧化物也可以是优异的。质子电导率的依赖性依赖于晶粒尺寸的依赖性,而不是基于晶界区域的增加来从几何考虑中预期的依赖性。这种观察强烈建议,除了晶界区域的增加之外的因素发挥作用,这是进一步调查的考虑因素。

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