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A training effect on electrical properties in nanoscale BiFeO_3

机译:纳米BiFeO_3对电性能的训练作用。

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We report our observation of the training effect on dc electrical properties in a nanochain of BiFeO_3 as a result of large scale migration of defects under the combined influence of electric field and Joule heating. We show that an optimum number of cycles of electric field within the range zero to ~1.0 MV cm~(-1) across a temperature range 80-300 K helps in reaching the stable state via a glass-transition-like process in the defect structure. Further treatment does not give rise to any substantial modification. We conclude that such a training effect is ubiquitous in pristine nanowires or chains of oxides and needs to be addressed for applications in nanoelectronic devices.
机译:我们报告了在电场和焦耳加热的综合影响下,由于缺陷的大规模迁移,导致对BiFeO_3纳米链中的直流电性能的训练效果的观察结果。我们表明,在80-300 K的温度范围内,零至〜1.0 MV cm〜(-1)范围内的最佳电场循环数有助于通过缺陷的玻璃化转变过程达到稳定状态结构体。进一步的处理不会引起任何实质性的改变。我们得出结论,这种训练效果在原始的纳米线或氧化物链中无处不在,需要在纳米电子设备中加以解决。

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