Effect of Eu Doping on Structural, Optical and Magnetic Properties of BiFeO3 Materials

Dao Viet Thang, Nguyen Manh Hung, Nguyen Thi Phuong Thao, Nguyen Cao Khang, Le Thi Mai Oanh, Ngo Thi Cam Linh, Bui Dinh Tu
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Abstract

Bi1-xEuxFeO3 (BEFO) (x = 0.00 ÷ 0.10) materials were prepared by sol-gel method. The crystal structural, Raman scattering, magnetic and optical properties of BEFO were investigated by X-ray diffraction (XRD), Raman scattering spectroscopy, magnetic hysteresis (M-H) loops and fluorescence spectroscopy (FL), respectively. Obtained results of the characterization showed that Eu-doping affected structural, optical and magnetic properties of BFO materials. All samples were crystallized in the rhombohedral structure with R3C space group with crystal lattice parameters of a = 5.585 Å, c = 13.832 Å and the average crystal size of LXRD = 581 Å for BFO materials whereas the a, c and LXRD of Eu-doped samples decrease with the increasing of Eu3+ concentration. The analysis result of Raman scattering spectroscopy showed that the position of the characteristic peak for Bi-O covalent bonds shifts toward higher frequency when Eu3+ concentration increases, confirming the dopping substitution of Eu3+ ions into Bi-sites. Fluorescence spectra showed the enhancement of characteristic emission peaks with the increase of Eu concentration. All samples exhibited weak ferromagnetic behaviour with saturation magnetization of Ms = 0.006 emu/g and remnant magnetization of Mr = 0.004 emu/g for BFO materials. The value of Ms and Mr of Eu-doped BFO increases compared to those of undoped-BFO. The origin of ferromagnetism and fluorescence improvement has been discussed.
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Eu掺杂对BiFeO3材料结构、光学和磁性能的影响
采用溶胶-凝胶法制备Bi1-xEuxFeO3 (BEFO) (x = 0.00 ÷ 0.10)材料。采用x射线衍射仪(XRD)、拉曼散射仪(Raman)、磁滞回线(M-H)和荧光光谱(FL)分别研究了BEFO的晶体结构、拉曼散射、磁性和光学性质。表征结果表明,铕掺杂影响了BFO材料的结构、光学和磁性能。BFO材料的晶格参数为a = 5.585 Å, c = 13.832 Å, LXRD的平均晶粒尺寸为581 Å,而eu掺杂样品的a、c和LXRD随Eu3+浓度的增加而减小。拉曼散射光谱分析结果表明,随着Eu3+浓度的增加,Bi-O共价键特征峰的位置向更高频率移动,证实了Eu3+离子对bi位点的掺杂取代。荧光光谱显示,随着铕浓度的增加,特征发射峰增强。BFO材料的饱和磁化强度Ms = 0.006 emu/g,残余磁化强度Mr = 0.004 emu/g。与未掺杂的BFO相比,掺入eu的BFO的Ms和Mr值有所增加。讨论了铁磁性的来源和荧光的改善。
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