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Magnetic properties of SiO2-coated iron oxide nanoparticles studied by polarized small angle neutron scattering

机译:极化小角中子散射研究SiO2包覆的氧化铁纳米粒子的磁性

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摘要

The structural and magnetic properties of non-coated and SiO2-coated iron oxide (Fe3O4) nanoparticles (NPs) were investigated by a polarized small-angle neutron scattering (P-SANS) method. Measurement of the P-SANS allowed us to obtain nuclear and magnetic scattering cross sections of the NPs under applied magnetic field. The analysis of the scattering intensity provided the structural parameters and the spatial magnetization distribution of the non-coated and the SiO2 coated core shell NPs. The measured radius of both NPs and the shell thickness of the core shell NPs were in consistent with those measured by the transmission electron microscopy. In comparison, the magnetic core radii of both NPs were 0.12-0.6 nm smaller than the nuclear radii, indicating the magnetization reduction in the surface region of core Fe3O4 in both NPs. However, the reduced magnetization region, which is the surface spin canting region, of the SiO2-coated NPs was relatively narrower than that of the non-coated NPs. We suggest that the SiO2 coating on the Fe3O4 NPs may stabilize the spin order of atoms and prohibit the oxidation or defect formation at the surface region of the Fe3O4 NPs, and enhance the corresponding magnetization of the Fe3O4 NPs by the reduction of the spin canting layer thickness. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过极化小角中子散射(P-SANS)方法研究了未涂覆和SiO2涂覆的氧化铁(Fe3O4)纳米粒子(NPs)的结构和磁性。 P-SANS的测量使我们能够在施加磁场的情况下获得NP的核散射和磁散射截面。散射强度的分析提供了未涂覆的和SiO2涂覆的核壳NP的结构参数和空间磁化分布。 NPs的测量半径和核壳NPs的壳厚度均与透射电子显微镜测得的一致。相比之下,两个NP的磁芯半径都比核半径小0.12-0.6 nm,这表明两个NP的Fe3O4芯表面区域的磁化强度降低。然而,SiO 2涂覆的NP的减少的磁化区域,即表面自旋倾斜区域,比未涂覆的NP的缩小的磁化区域相对较窄。我们认为,Fe3O4 NPs上的SiO2涂层可以稳定原子的自旋顺序,并阻止Fe3O4 NPs表面区域的氧化或缺陷形成,并通过减少自旋倾斜层来增强Fe3O4 NPs的相应磁化强度。厚度。 (C)2015 Elsevier B.V.保留所有权利。

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