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Controlled fabrication of bi-functional Fe3O4@SiO2@Gd2O3:Yb,Er nanoparticles and their magnetic, up-conversion luminescent properties

机译:双功能Fe3O4 @ SiO2 @ Gd2O3:Yb,Er纳米粒子的受控制备及其磁性,上转换发光特性

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摘要

We develop a facile layer-by-layer deposition process to create bi-functional Fe3O4@SiO2@Gd2O3: Yb, Er nanostructures composed of magnetic Fe3O4 cores, variable SiO2 mid-layers, and up-converting Gd2O3 shells. The synthetic process is well-controlled and the obtained Fe3O4@SiO2@Gd2O3: Yb, Er nanoparticles show relative monodispersity and exhibit tunable magnetic and up-conversion luminescence depending on the thickness of SiO2 mid-layers. The influences of SiO2 mid-buffer-layers on morphology, magnetism, and up-conversion luminescence are well addressed. The obtained bifunctional Fe3O4@SiO2@Gd2O3: Yb, Er nanoparticles may be potentially applicable in magnetic, fluorescent, and biological applications. The synthetic route may be employed for fabricating other multifunctional nanostructures.
机译:我们开发了一种简便的逐层沉积工艺,以创建双功能Fe3O4 @ SiO2 @ Gd2O3:Yb,由磁性Fe3O4核,可变SiO2中间层和上转换Gd2O3壳组成的Er纳米结构。合成过程受到良好控制,所得的Fe3O4 @ SiO2 @ Gd2O3:Yb,Er纳米颗粒表现出相对的单分散性,并根据SiO2中层的厚度表现出可调谐的磁性和上转换发光。 SiO2中间缓冲层对形态,磁性和上转换发光的影响得到了很好的解决。所获得的双官能的Fe3O4 @ SiO2 @ Gd2O3:Yb,Er纳米粒子可能潜在地适用于磁性,荧光和生物应用。合成途径可用于制造其他多功能纳米结构。

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