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Tuning of Magnetic Properties in Cobalt-Doped Nanocrystalline Bismuth Ferrite

机译:钴掺杂纳米晶铋铁氧体中磁性的调节

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This study reports on the structural and magnetic characterizations of free-standing bismuth ferrite, BiFeO_3, nanoparticles synthesized in polyol medium. Fine tuning of the ferrite magnetic properties was achieved by adding an excess bismuth species or doping with cobalt ions, coupled with thermal annealing. Crystalline Bi_(1-y)Co_yFeO_3 powders (where 'y' ranges from 0.00 to 0.10) were produced after annealing the precursors for one hour at 700°C. The average crystallite size was calculated to be approximately 22 nm. We found that the synthesis under stoichiometric excess of Bi species (up to 10 at.%) promoted a more complete crystallization of the material, i.e., no precursor phases remained. Furthermore, both the saturation magnetization and the coercivity of the synthesized powders were strongly influenced by the concentration of Co. They increased from 0.13 emu/g and 19 Oe to 3.5 emu/g and 1183 Oe for pure BiFeO_3 and 10 at.% Co-doped BiFeO_3, respectively.
机译:这项研究报告了在多元醇介质中合成的自立式铋铁氧体BiFeO_3纳米粒子的结构和磁性特征。通过添加过量的铋或掺杂钴离子,再进行热退火,可以实现对铁氧体磁性能的微调。在将前体在700°C退火1小时后,生成晶体Bi_(1-y)Co_yFeO_3粉末(其中y为0.00至0.10)。平均微晶尺寸经计算为约22nm。我们发现,在化学计量上过量的Bi物种(高达10原子%)下的合成促进了材料的更完全结晶,即,没有剩余的前体相。此外,合成粉末的饱和磁化强度和矫顽力都受Co浓度的影响。对于纯BiFeO_3和10 at。%Co-,Co的浓度从0.13 emu / g和19 Oe增加到3.5 emu / g和1183 Oe。分别掺杂BiFeO_3。

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