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Growth and magnetic behavior of bismuth substituted yttrium iron garnet nanoparticles

机译:铋取代钇铁石榴石纳米粒子的生长和磁行为

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Crystal growth and the magnetic properties of bismuth substituted yttrium iron garnet (Bi-YIG) nanoparticles were studied with particular focus on the bismuth composition dependence of the magnetic properties of the particles and the effects of annealing on the garnet phase formation. The Bi-YIG nanoparticles of 47–67 nm in size can be chemically synthesized when they are annealed at 650–850 °C. Both the lattice constant and the magnetization of the garnet nanoparticles linearly increase when the bismuth composition in the Bi-YIG particles increases. We have found that chemically synthesized nanoparticles transform from the amorphous to the garnet phase when annealed at temperatures below 650 °C, while the onset of magnetic moment of iron in the garnet nanoparticles is observed slightly above 650 °C. According to M?ssbauer effect measurements, the hyperfine fields of 57Fe at the tetrahedral and octahedral sites in the garnet are 39 and 48 T, respectively.
机译:研究了铋取代钇铁石榴石(Bi-YIG)纳米粒子的晶体生长和磁性,特别关注了铋的组成对颗粒磁性的依赖性以及退火对石榴石相形成的影响。当Bi-YIG纳米粒子在650-850°C退火时,可以化学合成大小为47-67 nm的纳米粒子。当Bi-YIG颗粒中的铋组成增加时,石榴石纳米颗粒的晶格常数和磁化强度都线性增加。我们发现,当在低于650°C的温度下退火时,化学合成的纳米颗粒会从无定形转变为石榴石相,而在略高于650°C的温度下观察到石榴石纳米颗粒中铁的磁矩开始出现。根据Msssbauer效应测量,石榴石的四面体和八面体部位的57 Fe超细场分别为39 T和48T。

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