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通过局部结构分析表征Bi(1-x)Gd(x)FeO3纳米颗粒的磁性和介电性质

Characterization of magnetic and dielectric properties of Bi(1-x)Gd(x)FeO3 nanoparticles by local structure analyses.

作者信息

Yanoh Takuya, Kurokawa Akinobu, Takeuchi Hiromasa, Yano Shinya, Onuma Kazuki, Kondo Takaya, Miike Kazunari, Miyasaka Toshiki, Mibu Ko, Ichiyanagi Yuko

出版信息

J Nanosci Nanotechnol. 2014 Mar;14(3):2190-7. doi: 10.1166/jnn.2014.8539.

Abstract

Bi(1-x)Gd(x)FeO3 (0 < or = x < or = 1.0) nanoparticles were synthesized by a wet chemical method. The annealing temperatures were controlled to obtain single-phase Bi(1-x)Gd(x)FeO3 nanoparticles. The crystal diameters decreased as the number of doped Gd ions increased. The crystal structure changed, as the number of Gd ions increased, from rhombohedral to orthorhombic perovskite, at x = 0.2. The behavior of the magnetization curves observed at various values of x (x = 0.05, 0.1, 0.15) of the rhombohedral structure suggested that the canted antiferromagnetism and remanent magnetization (M(r)) drastically increased, compared with those at x = 0 (BiFeO3). It is suggested that the spin-canting angle of the Fe ions increased with the increase in the number of Gd ions. The dielectric properties at x = 0.1 showed that the dielectric loss (tan delta) was improved, compared with that at x = 0 (BiFeO3), by approximately 90%, while the real part of the dielectric constant epsilon' was reduced by approximately 15%. The reason is that the doping impurities restrained the reduction in the leakage current. It was found, from the X-ray absorption fine structure (XAFS) spectra, that Gd ions were doped accurately and that the symmetry of the B site was improved. The Mössbauer analysis suggested the existence of magnetic cycloid spiral ordering.

摘要

采用湿化学法合成了Bi(1-x)Gd(x)FeO3(0≤x≤1.0)纳米颗粒。控制退火温度以获得单相Bi(1-x)Gd(x)FeO3纳米颗粒。随着掺杂Gd离子数量的增加,晶体直径减小。当Gd离子数量增加时,晶体结构在x = 0.2时从菱面体变为正交钙钛矿。在菱面体结构的不同x值(x = 0.05、0.1、0.15)下观察到的磁化曲线行为表明,与x = 0(BiFeO3)时相比,倾斜反铁磁性和剩余磁化强度(M(r))急剧增加。表明Fe离子的自旋倾斜角随Gd离子数量的增加而增大。x = 0.1时的介电性能表明,与x = 0(BiFeO3)时相比,介电损耗(tanδ)提高了约90%,而介电常数实部ε'降低了约15%。原因是掺杂杂质抑制了漏电流的降低。从X射线吸收精细结构(XAFS)光谱发现,Gd离子被精确掺杂,且B位的对称性得到改善。穆斯堡尔分析表明存在磁摆线螺旋有序。

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