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Magnetic nanoparticles in borate glasses: Identification and sizing

机译:硼酸盐玻璃中的磁性纳米粒子:鉴定和定径

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Heat treatment of borate glasses co-doped with low contents of iron and larger radius elements: Dy, Tb, Gd, Ho, Er, Y and Bi results in formation of magnetic nanoparticles, radically changing their physical properties. Transmission electron microscopy and synchrotron radiation-based techniques: XRD, EXAFS, XANES and SAXS, show a broad distribution of nanoparticle sizes with characteristic depending on the treatment regime; a crystalline structure of these nanoparticles is detected in heat treated samples. Magnetic circular dichroism (MCD) studies of samples subjected to heat treatment as well as of maghemite, magnetite and iron garnet allow to unambiguously assigning the nanoparticle structure to maghemite. Different features observed in the MCD spectra are related to different electron transitions in Fe3+ ions gathered in the nanoparticles. Variable-temperature electron magnetic resonance (EMR) studies confirm the formation of magnetic nanoparticles and the identification of their nature. Computer simulations of the EMR spectra corroborate the broad distribution of nanoparticle sizes found by “direct” techniques.
机译:共掺杂低铁含量和大半径元素(Dy,Tb,Gd,Ho,Er,Y和Bi的硼酸盐玻璃)的热处理会形成磁性纳米粒子,从根本上改变其物理性质。透射电子显微镜和基于同步辐射的技术:XRD,EXAFS,XANES和SAXS,显示出纳米粒子尺寸的广泛分布,其特征取决于治疗方案;在热处理的样品中检测到这些纳米颗粒的晶体结构。磁圆二色性(MCD)对经过热处理的样品以及磁赤铁矿,磁铁矿和铁石榴石的研究可以明确地将纳米粒子结构分配给磁赤铁矿。在MCD光谱中观察到的不同特征与纳米颗粒中聚集的Fe3 +离子的不同电子跃迁有关。可变温度电子磁共振(EMR)研究证实了磁性纳米颗粒的形成及其性质的鉴定。 EMR光谱的计算机模拟证实了通过“直接”技术发现的纳米颗粒尺寸的广泛分布。

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