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Self-assembly of superparamagnetic magnetite particles into peapod-like structures and their application in optical modulation

机译:超顺磁性磁铁矿颗粒自组装成豆荚状结构及其在光调制中的应用

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摘要

Superparamagnetic Fe3O4/SiO2/TiO2 peapod-like nanostructures have been successfully synthesized by using Fe3O4/SiO2 core/shell particles as building blocks and TiO2 as the adhesive without the need of any hard or soft templates. The fabrication process involves chaining the Fe3O4/SiO2 cores during magnetic stirring and subsequent fixing of the chain structure during TiO2 coating. The number of Fe3O4/SiO2 cores arranged linearly in the chains could be effectively controlled by tuning the amount of titanium precursor or the magnetic stirring rate. The double layer coating of SiO2 and TiO2 enhances thermal and chemical stability of the nanopeapods, and the one-dimensional chain structure produces interesting properties that enable applications not possible with conventional magnetite materials. As a demonstration, we show here the use of these superparamagnetic peapod-like nanostructures for low-frequency optical modulation.
机译:以Fe3O4 / SiO2核/壳粒子为结构单元,TiO2为胶粘剂,无需任何硬模板或软模板,已成功合成了超顺磁性Fe3O4 / SiO2 / TiO2豆豆状纳米结构。制造过程包括在磁力搅拌过程中将Fe3O4 / SiO2核链接起来,然后在TiO2涂覆过程中将链结构固定下来。通过调节钛前驱体的量或磁力搅拌速度,可以有效地控制线性排列在链中的Fe3O4 / SiO2核的数量。 SiO2和TiO2的双层涂层增强了纳米豆荚的热稳定性和化学稳定性,并且一维链状结构产生了令人感兴趣的特性,使常规磁铁矿材料无法进行应用。作为演示,我们在这里展示了这些超顺磁性豆荚状纳米结构在低频光学调制中的应用。

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