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Room Temperature Tunable Multiferroic Properties in Sol-Gel-Derived Nanocrystalline Sr(Ti1−xFex)O3−δ Thin Films

机译:溶胶-凝胶衍生的纳米Sr(Ti1-xFex)O3-δ薄膜的室温可调多铁性

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摘要

Sr(Ti1−xFex)O3−δ (0 ≤ x ≤ 0.2) thin films were grown on Si(100) substrates with LaNiO3 buffer-layer by a sol-gel process. Influence of Fe substitution concentration on the structural, ferroelectric, and magnetic properties, as well as the leakage current behaviors of the Sr(Ti1−xFex)O3−δ thin films, were investigated by using the X-ray diffractometer (XRD), atomic force microscopy (AFM), the ferroelectric test system, and the vibrating sample magnetometer (VSM). After substituting a small amount of Ti ion with Fe, highly enhanced ferroelectric properties were obtained successfully in SrTi0.9Ti0.1O3−δ thin films, with a double remanent polarization (2Pr) of 1.56, 1.95, and 9.14 μC·cm−2, respectively, for the samples were annealed in air, oxygen, and nitrogen atmospheres. The leakage current densities of the Fe-doped SrTiO3 thin films are about 10−6–10−5 A·cm−2 at an applied electric field of 100 kV·cm−1, and the conduction mechanism of the thin film capacitors with various Fe concentrations has been analyzed. The ferromagnetic properties of the Sr(Ti1−xFex)O3−δ thin films have been investigated, which can be correlated to the mixed valence ions and the effects of the grain boundary. The present results revealed the multiferroic nature of the Sr(Ti1−xFex)O3−δ thin films. The effect of the annealing environment on the room temperature magnetic and ferroelectric properties of Sr(Ti0.9Fe0.1)O3−δ thin films were also discussed in detail.
机译:Sr(Ti1-xFex)O3-δ(0≤x≤0.2)薄膜通过溶胶-凝胶工艺在具有LaNiO3缓冲层的Si(100)衬底上生长。利用X射线衍射仪(原子),研究了Fe取代浓度​​对Sr(Ti1-xFex)O3-δ薄膜的结构,铁电和磁性以及漏电流行为的影响。力显微镜(AFM),铁电测试系统和振动样品磁力计(VSM)。用少量的Ti离子取代Fe后,在SrTi0.9Ti0.1O3-δ薄膜中成功获得了高度增强的铁电性能,其双剩极化(2Pr)为1.56、1.95和9.14μC·cm 分别在空气,氧气和氮气气氛中对样品的-2 进行退火。掺杂Fe的SrTiO3薄膜的漏电流密度约为10 -6 –10 -5 A·cm -2 。对100 kV·cm -1 的电场进行了分析,分析了不同浓度的Fe薄膜电容器的导电机理。研究了Sr(Ti1-xFex)O3-δ薄膜的铁磁性能,这可能与混合价离子和晶界的影响有关。目前的结果揭示了Sr(Ti1-xFe x )O 3-δ薄膜的多铁性。退火环境对Sr(Ti 0.9 Fe 0.1 )O 3-δ薄膜的室温磁性和铁电性能的影响还进行了详细讨论。

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