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首页> 外文期刊>The journal of physics and chemistry of solids >Effect of Gd doping on structural, electrical and magnetic properties of BiFeO_3 electroceramic
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Effect of Gd doping on structural, electrical and magnetic properties of BiFeO_3 electroceramic

机译:Gd掺杂对BiFeO_3电陶瓷结构,电和磁性能的影响

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摘要

Room temperature multiferroic electroceramics of Gd doped BiFeO_3 monopnasic materials nave Been synthesized adopting a slow step sintering schedule. Incorporation of Gd nucleates the development of orthorhombic grain growth habit without the appearance of any significant impurity phases with respect to original rhombohedral (R3c) phase of un-doped BiFeO_3. It is observed that, the materials showed room temperature enhanced electric polarization as well as ferromagnetism when rare earth ions like Gd doping is critically optimized (x=0.15) in the composition formula of Bi _(1+2x)Gd2x/2 Fe_(1-2x),O_3. We believe that magnetic moment of Gd~(+3) ions in Gd doped BiFeO_3 tends to align in the same direction with inspect to ferromagnetic component associated with the iron sub lattice. The dielectric constant as well as loss factor shows strong dispersion at lower frequencies and the value of leakage current is greatly suppressed with the increase in concentration of x in the above composition Addition of excess bismuth and Gd (x=0.1 and 0.15) caused structural transformation as well as compensated bismuth loss during high temperature sintering. Doping of Gd in BiFeO_3 also suppresses spiral spin modulation structure, which can change Fe-O-Fe bond angle or spin order resulting in enhanced ferromagnetic property.All rights reserved.
机译:Gd掺杂BiFeO_3单体材料的室温多铁电陶瓷采用慢速烧结程序合成。相对于未掺杂的BiFeO_3的原始菱形(R3c)相,掺入Gd可以形成正交晶晶粒生长习性,而不会出现任何明显的杂质相。观察到,在Bi _(1 + 2x)Gd2x / 2 Fe_(1)的组成公式中,对像Gd掺杂这样的稀土离子进行优化时(x = 0.15),材料显示出室温增强的极化以及铁磁性。 -2x),O_3。我们认为,掺Gd的BiFeO_3中的Gd〜(+3)离子的磁矩趋向于与检查方向一致,以检查与铁子晶格相关的铁磁成分。在上述组成中,介电常数和损耗因数在较低频率下显示出很强的色散,并且随着x浓度的增加,漏电流的值得到了极大的抑制。过量的铋和Gd(x = 0.1和0.15)的添加导致结构转变以及高温烧结过程中补偿的铋损失。在BiFeO_3中掺杂Gd还可以抑制螺旋自旋调制结构,该结构可以改变Fe-O-Fe键角或自旋顺序,从而增强铁磁性能。保留所有权利。

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