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Nanocrystalline versus microcrystalline Lo2O:B2O 3 composites: Anomalous ionic conductivities and percolation theory

机译:纳米晶与微晶Lo2O:B2O 3复合材料:异常离子电导率和渗流理论

摘要

We study ionic transport in nano- and microcrystalline (1−x)Li2O:xB2O3 composites using standard impedance spectroscopy. In the nanocrystalline samples (average grain size of about 20 nm), the ionic conductivity σdc increases with increasing content x of B2O3 up to a maximum at x≈0.5. Above x≈0.92, σdc vanishes. By contrast, in the microcrystalline samples (grain size about 10μm), σdc decreases monotonically with x and vanishes above x≈0.55. We can explain this strikingly different behavior by a percolation model that assumes an enhanced conductivity at the interfaces between insulating and conducting phases in both materials and explicitly takes into account the different grain sizes. © 2000 The American Physical Society.
机译:我们使用标准阻抗谱研究了纳米和微晶(1-x)Li2O:xB2O3复合材料中的离子传输。在纳米晶体样品(平均晶粒尺寸约为20 nm)中,离子电导率σdc随B2O3含量x的增加而增加,直至x≈0.5时达到最大值。在x≈0.92以上,σdc消失。相比之下,在微晶样品(晶粒尺寸约为10μm)中,σdc随着x单调减小,而在x≈0.55以上消失。我们可以通过渗流模型解释这种明显不同的行为,渗流模型假定两种材料的绝缘相和导电相之间的界面处的电导率都提高,并且明确考虑了不同的晶粒尺寸。 ©2000美国物理学会。

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