首页> 外文期刊>Journal of Applied Physics >Correlation between lattice strain and physical (magnetic, dielectric, and magnetodielectric) properties of perovskite-spinel (Bi_(0.85)La_(0.15)FeO_3)_((1-x)_~-) (NiFe_2O_4)_((x)) composites
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Correlation between lattice strain and physical (magnetic, dielectric, and magnetodielectric) properties of perovskite-spinel (Bi_(0.85)La_(0.15)FeO_3)_((1-x)_~-) (NiFe_2O_4)_((x)) composites

机译:钙钛矿-尖晶石(Bi_(0.85)La_(0.15)FeO_3)_((1-x)_ ~~-)(NiFe_2O_4)_((x))的晶格应变与物理(磁,电和磁电)性质之间的相关性复合材料

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摘要

Multiferroic composites are the current research interest due to their multi-functional behavior with promising electrical and magnetic properties compared to single crystallographic phase multiferroic materials. Hence, multiferroic composites of (1-x)Bi0.85La0.15FeO3-(x)NiFe2O4 (x=0 to 0.50) have been investigated by considering Bi0.85La0.15FeO3 as a ferroelectric phase and NiFe2O4 as a magnetic phase. The crystal structure was examined by analyzing the X-ray diffraction (XRD) patterns. Different crystal structure parameters were obtained from the Rietveld refinement of XRD patterns. An increase in the lattice parameters of both Bi0.85La0.15FeO3 (BLFO) and NiFe2O4 (NFO) phases has been observed with the increase in the percentage of NiFe2O4 in the composites. Absorption peaks in Raman spectra shift toward lower frequencies with the increase in the percentage of NFO in the composite. Variation of lattice parameters and shifting of the Raman modes suggest the lattice strain at the interfaces of BLFO and NFO. Theoretical magnetizations were calculated for all composites by using the sum rule (using the magnetization of individual phases) and compared with experimentally observed magnetization. Interestingly, the experimental values of magnetizations of the composites are more than the theoretically calculated ones. It could be due to the lattice strain, which was observed from the XRD and Raman analysis.
机译:与单结晶相多铁性材料相比,多铁性复合材料具有多功能性能和令人信服的电和磁性能,因此受到了当前的研究兴趣。因此,已经通过将Bi0.85La0.15FeO3作为铁电相并且将NiFe2O4作为磁相来研究了(1-x)Bi0.85La0.15FeO3-(x)NiFe2O4(x = 0至0.50)的多铁复合材料。通过分析X射线衍射(XRD)图检查晶体结构。从X射线衍射图的Rietveld精炼获得了不同的晶体结构参数。随着复合材料中NiFe2O4百分比的增加,Bi0.85La0.15FeO3(BLFO)和NiFe2O4(NFO)相的晶格参数均增加。随着复合材料中NFO百分比的增加,拉曼光谱中的吸收峰向低频移动。晶格参数的变化和拉曼模的移动表明BLFO和NFO界面处的晶格应变。使用求和规则(使用各个相的磁化强度)计算所有复合材料的理论磁化强度,并将其与实验观察到的磁化强度进行比较。有趣的是,复合材料的磁化强度实验值比理论计算值高。这可能是由于从XRD和拉曼分析中观察到的晶格应变所致。

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  • 来源
    《Journal of Applied Physics》 |2019年第24期|244105.1-244105.11|共11页
  • 作者单位

    Indian Inst Technol Patna, Dept Phys, Patna 801103, Bihar, India;

    Indian Inst Technol Patna, Dept Phys, Patna 801103, Bihar, India;

    Indian Inst Technol Patna, Dept Phys, Patna 801103, Bihar, India;

    Indian Inst Technol Patna, Dept Phys, Patna 801103, Bihar, India;

    Aryabhatta Knowledge Univ, Aryabhatta Ctr Nanosci & Nanotechnol, Patna 800001, Bihar, India;

    Indian Inst Technol Patna, Dept Phys, Patna 801103, Bihar, India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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