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首页> 外文期刊>Nanoscale >Nanoscaled self-alignment of Fe3O4 nanodiscs in ultrathin rGO films with engineered conductivity for electromagnetic interference shielding
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Nanoscaled self-alignment of Fe3O4 nanodiscs in ultrathin rGO films with engineered conductivity for electromagnetic interference shielding

机译:同时对Fe3O4纳米组合nanodiscs超薄rGO工程导电性的电影对电磁干扰屏蔽

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Ultrathin (similar to 2 mu m) reduced graphene oxide (rGO) film embedded with self-aligned Fe3O4 nanodiscs were successfully fabricated through the filtration-assisted self-assembly method. In the as-fabricated hybrid film, Fe3O4 nanodiscs with thin thickness (26 nm) and high aspect ratio (similar to 9) were readily self-assembled and aligned in rGO intersheets under the assistance of hydrostatic forces. Compared with spherical Fe3O4 nanoparticles, introducing the Fe3O4 nanodiscs into rGO paper could not only offer high magnetic permeability and magnetic loss in a broad frequency range at the gigahertz level, but also increase the electrical conductivity of rGO film by means of improving the surface roughness without disrupting the conductive network of the rGO layers. Due to the above advantages, the free-standing rGO/Fe3O4 nanodisc magnetic hybrid film (56 wt%) exhibited an EMI shielding effectiveness (SE) of around 11.2 dB in the frequency range of 2-10 GHz, which is about 50% and 72% higher than that of neat rGO film and rGO/Fe3O4 nanosphere hybrid films (with similar particle size and loading weight fraction) prepared under the same conditions, respectively. Furthermore, compared with non-magnetic neat rGO film, the outstanding magnetic properties of the rGO/Fe3O4 nanodisc film paves the way for it to be used as a multifunctional material that can be controlled by magnetic fields. Additionally, the moderate thermal reduction temperature (420 degrees C) would be meaningful for large scale fabrication. Meanwhile, the strategy of achieving good alignment at the nanoscale could shed light on developing heterogeneous structures with self-aligned two-dimensional (2D) (magnetic or non-magnetic) nano-inclusions for various applications.
机译:超薄(类似于2μm)减少了石墨烯氧化(rGO)电影嵌入式自对准Fe3O4nanodiscs成功的通过filtration-assisted自组装方法。纯属捏造混合电影,Fe3O4 nanodiscs用薄的厚度(26海里)和高纵横比(类似于9)是容易自组装下排列rGO intersheets援助静水的力量。Fe3O4 Fe3O4纳米颗粒,引入nanodiscs rGO纸不仅可以提供高磁导率和磁损耗宽频率范围在兆赫级,但是也增加rGO的导电性电影通过改善表面粗糙度没有破坏的导电网络rGO层。自立式rGO / Fe3O4 nanodisc磁混合电影(56 wt %)表现出一种EMI屏蔽约11.2 dB (SE)的有效性2 - 10 GHz的频率范围,约为50%和72%高于整洁rGO电影rGO / Fe3O4 nanosphere混合电影(类似粒子大小和加载重量分数)准备在相同条件下,分别。此外,相比之下,非磁性整洁rGO电影,杰出的磁性的rGO / Fe3O4 nanodisc电影铺平了道路作为一种多功能材料,可以使用由磁场控制。温和热还原温度(420度)将为大规模的有意义制造。良好的对齐在纳米尺度上可以揭示开发异构结构自对准二维(2 d)(磁性或非磁性)nano-inclusions不同应用程序。

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