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Engineering Nanostructures by Decorating Magnetic Nanoparticles onto Graphene Oxide Sheets to Shield Electromagnetic Radiations

机译:通过将磁性纳米颗粒装饰到氧化石墨烯片上以屏蔽电磁辐射,从而工程化纳米结构。

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In this study, a minimum, reflection loss of 70 a was achieved, for a 6 mm thick shield (at 17.1 GHz frequency) employing a unique approach. This was accomplished by engineering nanostructures through decoration of magnetic nanopartides (nickel, Ni) onto graphene oxide (GO) sheets. Enhanced electromagnetic (EM) shielding was derived by selectively, localizing the nanoscopic particles in a specific phase of polyethylene (PE)/poly(ethylene oxide) (PEO) blends. By introduction of a conducting inclusion (like multiwall carbon nanotubes, MWNTs) together with the engineered nanostructures (nickel-decorated GO, (GO-Ni), the shielding efficiency can be enhanced significantly in contrast to physically mixing the particles in the blends. For instance, the composites showed a shielding efficiency >25 dB for a combination of MWNTS (3 wt %) and Ni nanoparticles (52 wt %) in PE/PEO blends. However, similar shielding effectiveness could be achieved for a combination of MWNTs (3 wt %) and 10 vol % of GO-Ni where in the effective concentration of Ni was only 19 wt %. The GO-Ni sheets facilitated in an efficient charge transfer as manifested from high electrical conductivity in the blends besides enhancing the permeability in the blends. It is envisioned that GO is simultaneously reduced in the process of synthesizing GO-Ni, and this facilitated in efficient charge transfer between the neighboring CNTs. More interestingly, the blends With MWNTs/GO-Ni attenuated the incoming EM radiation mostly by absorption. This study opens new avenues in designing polyolefin-based lightweight shielding materials by engineering nanostructures for numerous applications.
机译:在这项研究中,采用独特的方法,对于6毫米厚的屏蔽层(在17.1 GHz频率下),实现了70 a的最小反射损耗。这是通过将磁性纳米粒子(镍,镍)装饰在氧化石墨烯(GO)片上来对纳米结构进行工程设计来实现的。通过选择性地将纳米粒子定位在聚乙烯(PE)/聚环氧乙烷(PEO)混合物的特定相中,可以得到增强的电磁(EM)屏蔽。通过引入导电夹杂物(如多壁碳纳米管,MWNTs)以及工程纳米结构(镍装饰的GO(GO-Ni)),与物理混合掺合物中的颗粒相比,可以显着提高屏蔽效率。例如,PE / PEO共混物中MWNTS(3 wt%)和Ni纳米颗粒(52 wt%)的复合材料的屏蔽效率> 25 dB。然而,MWNTs的组合可以达到类似的屏蔽效果(3重量百分比)和10体积%的GO-Ni(其中Ni的有效浓度仅为19 wt%)GO-Ni片材促进了有效的电荷转移,这从掺混物中的高电导率可以看出,同时还提高了其渗透性。可以预见,在合成GO-Ni的过程中会同时还原GO,这有助于在相邻的CNT之间进行有效的电荷转移。更有趣的是,具有MWNTs / GO-Ni的混合物大部分是通过吸收来吸收入射的EM辐射。这项研究为通过工程纳米结构为众多应用设计基于聚烯烃的轻质屏蔽材料开辟了新途径。

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