Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7834655 | Applied Surface Science | 2018 | 11 Pages |
Abstract
To obtain high-performance electromagnetic shielding materials, structure and morphology are two key factors. We here developed an efficient and facial method to prepare high-performance 3D carbon nanofiber mats (CFM)/Fe3O4 hybrid electromagnetic shielding materials. For this purpose, the CFM were chemically modified by mussel-inspired poly-dopamine coating, which were further used as templates for decoration of Fe3O4 nanoparticles via solvothermal route. It was found that the Fe3O4 nano-spheres with diameters of 200-250â¯nm were uniformly coated on the surface of 3D carbon nanofibers. More importantly, the morphology and structure of resulting 3D carbon nanofiber mats/Fe3O4 hybrids could be easily controlled by altering the experiment parameters, which were examined by FT-IR, XPS, TGA, XRD, SEM, and TEM. The measured magnetic properties showed that saturation magnetism and coercivity increased from 13.4 to 39.7â¯emu/g and 85.3 to 104.6 Oe, respectively. The lowest reflectivity of resulting hybrid was calculated to be â47â¯dB at 10.0â¯GHz (2.5â¯mm). In addition, the reflectivity of 3D carbon nanofiber mats/Fe3O4 hybrid was less than â25â¯dB in the range of 7-13â¯GHz. Moreover, the resulting 3D carbon nanofiber mats/Fe3O4 hybrid exhibited an EMI shielding performance of â62.6â¯dB in the frequency range of 8.2-12.4â¯GHz. Therefore, 3D carbon fiber mats/Fe3O4 hybrids can be ideal EMI materials with strong absorption, low density, and wide absorption range.
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Authors
Yingqing Zhan, Zhihang Long, Xinyi Wan, Jiemin Zhang, Shuangjiang He, Yi He,