首页> 外文会议>International SAMPE Symposium Exhibition >SYNTHESIS CHARACTERIZATION OF MAGNETIC PROPERTIES IN La{sub}(0.7-x)Ln{sub}xPb{sub}0.3MnO{sub}3 (Ln=Pr, Nd, Gd, Dy, Sm AND Y) PEROVSKITE COMPOUNDS
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SYNTHESIS CHARACTERIZATION OF MAGNETIC PROPERTIES IN La{sub}(0.7-x)Ln{sub}xPb{sub}0.3MnO{sub}3 (Ln=Pr, Nd, Gd, Dy, Sm AND Y) PEROVSKITE COMPOUNDS

机译:La {sub}(0.7-x)Ln {sub} xpb {sub} 0.3mno {sub} 3(ln = pr,nd,gd,dy,sm和y)钙钛化合物中的合成表征

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The magnetization behaviors of perovskite oxides, La{sub}(0.7-x)Ln{sub}xPb{sub}0.3MnO{sub}3 (Ln=Pr, Nd, Gd, Dy, Sm and Y), have been synthesized. The replacement of La ion by Pr, Nd, Gd, Dy, Sm or Y results in a considerable decrease in the ferromagnetic ordering temperature Tc and clearly irreversible behavior in the FC-ZFC curves showing a short-range spin order phase. The fact is in agreement with the smaller ionic radii of Pr, Nd, Gd, Dy, Sm and Y ions in contrast to La ion and the corresponding larger distortion of perovskite structures. The saturation magnetization M{sub}s increases as Pr or Nd content increases while M{sub}s decreases as Sm or Y content increases. Moreover, the saturation magnetization M{sub}s increases and then decreases as Gd and Dy content increases. These results can be explained in terms of the competition between the increase of ferromagnetically interacting spins due to the introduction of magnetic Pr or Sm ions with f-shell electrons and suppression of ferromagnetism due to structure tuning induced by the small ionic radius of the interpolated cation into the La-site.
机译:已经合成了钙钛矿氧化物,La {Sub}(0.7-x)Ln {sub} xpb {sub} 3(ln = pr,nd,gd,dy,sm和y)的磁化行为。通过PR,Nd,Gd,Dy,SM或Y替换La离子,导致铁磁排序温度Tc的显着降低,并且在Fc-ZFC曲线中明显不可逆行为,显示出短距离旋转阶段。该事后与Pr,Nd,Gd,Dy,Sm和Y离子的较小离子半径相比,与La离子和相应的钙钛矿结构的相应变形相反。饱和磁化强度M {Sub} S随着Pr或Nd含量的增加而增加,而M {Sub} S随着SM或Y含量的增加而降低。此外,饱和磁化强度M {Sub} S增加,然后随着GD和Dy含量的增加而降低。这些结果可以在铁磁性相互作用之间的竞争方面解释,因为由于通过内插阳离子的小离子半径引起的结构调谐导致与F壳电子的抑制而导致的磁性PR或SM离子的抑制进入la-site。

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