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Crystal structure, leakage conduction mechanism evolution and enhanced multiferroic properties in Y-doped BiFeO3 ceramics

机译:掺Y的BiFeO3陶瓷的晶体结构,漏导机理演变及增强的多铁性。

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摘要

Ceramics of pure phase Yttrium (Y) doped BiFeO3 prepared by a solid-state sintering route were characterized by X-ray diffraction, Raman spectroscopy, magnetic and electrical measurements. The results and analysis show that Y substitution greatly reduces the leakage current and enhances the multiferroic properties of BiFeO3. Leakage conduction mechanism is shown to change from space-charge-limited conduction type in pure BiFeO3 to a Poole-Frenkel emission behavior in Bi0.90Y0.10FeO3. A Fowler-Nordheim tunneling mechanism in Bi0.95Y0.05FeO3 ceramic is also evidenced under high electric fields. At the same time, enhanced magnetic properties due to Y-doping are confirmed by temperature dependent magnetometry and supported by Raman spectroscopy. An unexpected and sharp switching behavior in the magnetization under low magnetic fields observed in Bi0.30Y0.10FeO3 ceramic, together with its improved ferroelectric property, may trigger such system for promising magneto-electric applications. (C) 2016 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:通过X射线衍射,拉曼光谱,磁和电测量,对通过固态烧结法制备的纯Y掺杂BiFeO3陶瓷进行了表征。结果和分析表明,Y置换大大降低了漏电流,增强了BiFeO3的多铁性。结果表明,泄漏的传导机制从纯BiFeO3中的空间电荷受限传导类型改变为Bi0.90Y0.10FeO3中的Poole-Frenkel发射行为。在高电场下,Bi0.95Y0.05​​FeO3陶瓷中的Fowler-Nordheim隧穿机理也得到了证实。同时,由温度依赖性磁力测定法证实了由Y掺杂引起的增强的磁性能,并得到了拉曼光谱的支持。在Bi0.30Y0.10FeO3陶瓷中观察到的低磁场下的磁化中出乎意料的,尖锐的开关行为,以及其改善的铁电性能,可能会触发这种系统用于有希望的磁电应用。 (C)2016 Elsevier Ltd和Techna Group S.r.l.版权所有。

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