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DC ionic conductivity of NaNO3 : gamma-Al2O3 composite solid electrolyte system

机译:NaNO3:γ-Al2O3复合固体电解质体系的直流离子电导率

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摘要

We present DC ionic conductivity measurements on composites formed between Na+ ion conductor (NaNO3) and dispersed insulating oxide (alumina). Enhancement of conductivity is noticed to increase with mole percent (m/o) of the dispersoid. The maximum enhancement observed is more than two orders of magnitude with respect to the host material. X-ray diffraction and differential scanning calorimetry studies ruled out the formation of solid solutions between the host material and the dispersoid. The experimental data indicating higher conductivity in dispersed system is interpreted in terms of the formation of space charge layer between the host material and the dispersoid in which defect concentration increases and that is thought to be the possible mechanism of conductivity enhancement. Activation energies obtained from the conductivity data in the extrinsic conduction region indicated least value for the systems at threshold mole percentage. (c) 2005 Published by Elsevier B.V.
机译:我们介绍了在Na +离子导体(NaNO3)和分散的绝缘氧化物(氧化铝)之间形成的复合材料上的DC离子电导率测量值。注意到电导率的提高随分散质的摩尔百分比(m / o)而增加。相对于主体材料,观察到的最大增强大于两个数量级。 X射线衍射和差示扫描量热法研究排除了主体材料和弥散体之间形成固溶体的可能性。表示分散体系中较高电导率的实验数据是根据基质材料与分散质之间的空间电荷层的形成来解释的,其中缺陷浓度增加,这被认为是电导率增强的可能机理。从非本征导电区域中的电导率数据获得的活化能表明该系统在阈值摩尔百分比下的最小值。 (c)2005年由Elsevier B.V.

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