Key Laboratory of In-Fiber Integrated Optics, Ministry of Education, College of Science, Harbin Engineering University, Harbin 150001, China.
Nanoscale. 2013 Dec 21;5(24):12296-303. doi: 10.1039/c3nr04058e.
We developed a new strategy, i.e., a seed-assisted method, to fabricate a three-dimensional (3D) SiO2@Fe3O4 core/shell nanorod array/graphene architecture. The fabrication processes involved deposition of β-FeOOH seeds on the graphene surfaces in the ferric nitrate aqueous solution, subsequent growth of β-FeOOH nanorod arrays on the graphene surfaces in the ferric chloride aqueous solution under hydrothermal conditions, deposition of SiO2 coating on the surfaces of β-FeOOH nanorods, and final formation of the 3D architecture by a thermal treatment process. Scanning electron microscopy and transmission electron microscopy measurements showed that the SiO2@Fe3O4 core/shell nanorods with a length and diameter of about 60 and 25 nm, respectively, were almost grown perpendicularly on both side surfaces of graphene sheets. The measured electromagnetic parameters showed that the 3D architecture exhibited excellent electromagnetic wave absorption properties, i.e., more than 99% of electromagnetic wave energy could be attenuated by the 3D architecture with an addition amount of only 20 wt% in the paraffin matrix. In addition, the growth mechanism of the 3D architecture was proposed, and thus, the strategy presented here could be used as a typical method to synthesize other 3D magnetic graphene nanostructures for extending their application areas.
我们开发了一种新策略,即种子辅助法,来制备三维(3D)SiO2@Fe3O4 核/壳纳米棒阵列/石墨烯结构。该制备过程包括在硝酸铁水溶液中在石墨烯表面上沉积β-FeOOH 种子,随后在水热条件下在氯化铁水溶液中在石墨烯表面上生长β-FeOOH 纳米棒阵列,在β-FeOOH 纳米棒表面上沉积 SiO2 涂层,以及通过热处理过程形成 3D 结构。扫描电子显微镜和透射电子显微镜测量表明,长度和直径分别约为 60nm 和 25nm 的 SiO2@Fe3O4 核/壳纳米棒几乎垂直生长在石墨烯片的两个表面上。测量的电磁参数表明,3D 结构表现出优异的电磁波吸收性能,即在石蜡基质中仅添加 20wt%的 3D 结构,即可衰减超过 99%的电磁波能。此外,提出了 3D 结构的生长机制,因此,这里提出的策略可作为合成其他 3D 磁性石墨烯纳米结构的典型方法,以扩展它们的应用领域。