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Dipole-directed assembly of Fe3O4 nanoparticles into nanorings via oriented attachment

机译:Fe3O4纳米粒子通过定向连接偶极定向组装成纳米环

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摘要

We have developed a novel hydrothermal method to fabricate Fe3O4 ring-like nanostructures via oriented attachment of Fe3O4 nanoparticles through intermediate platelets with incorporation of inorganic salts. The obtained samples were characterized by X-ray diffraction (XRD) analysis, X-ray photoelectron spectroscopy (XPS), scanning electron microscopy (SEM), transmission electron microscopy (TEM), selective-area electron diffraction (SAED), high-resolution TEM (HRTEM) and vibrating-sample magnetometer (VSM). A reasonable mechanism based on the self-assembly of magnetic Fe3O4 nanoparticles on graphene nanosheets using inorganic ions as crystal growth modifiers is proposed. The intrinsic dipole- dipole interactions between the individual magnetic Fe3O4 nanoparticles act as the driving force for nanoring formation. Saturation moment of the superparamagnetic Fe3O4 nanorings is much higher than that of the corresponding disassembled nanoparticles. The enhancement of saturation moment is due to the oriented ring-like assembly with synergistic magnetism. This study could provide an additional tool for fabricating other nanostructures via oriented attachment.
机译:我们已经开发出一种新颖的水热方法,通过将Fe3O4纳米粒子通过中间血小板与无机盐的掺入进行定向连接来制造Fe3O4环状纳米结构。通过X射线衍射(XRD)分析,X射线光电子能谱(XPS),扫描电子显微镜(SEM),透射电子显微镜(TEM),选择性区域电子衍射(SAED),高分辨率对样品进行表征TEM(HRTEM)和振动样品磁力计(VSM)。提出了一种基于磁性Fe3O4纳米粒子在石墨烯纳米片上自组装的合理机理,其中无机离子为晶体生长调节剂。单个磁性Fe3O4纳米粒子之间的固有偶极-偶极相互作用充当形成纳米环的驱动力。超顺磁性Fe 3 O 4纳米环的饱和力矩比相应的分解纳米颗粒的饱和力矩高得多。饱和力矩的增加归因于具有协同磁性的定向环形组件。这项研究可以为通过定向附着制造其他纳米结构提供额外的工具。

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