4.8 Article

Powerful absorbing and lightweight electromagnetic shielding CNTs/RGO composite

Journal

CARBON
Volume 145, Issue -, Pages 61-66

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.carbon.2019.01.009

Keywords

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Funding

  1. National Natural Science Foundation of China [51702197, 51502164, 51702196, 51332004]
  2. International Science and Technology Cooperation Program of China [2015DFR50350]
  3. Natural Science Foundation of Shaanxi Province [2016JQ5097]
  4. Natural Science Foundation of educational office of Shaanxi province [16JK1080, 17JK0554]
  5. Fund of the State Key Laboratory of Solidification Processing in NWPU [SKLSP201618]
  6. Doctoral Scientific Research Foundation of Shaanxi University of Science Technology [BJ16-06]

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Combination of lightweight and superior electrical conductive performance is charming for the application of macroscopic graphene foam composite. A porous carbon nanotubes/reduced graphene oxide (CNTs/RGO) foam composite are prepared by freeze-drying and in-situ catalytic grown methods. The CNTs/RGO foam composite consists of interconnected RGO nanosheets as the 3D frame and in-situ growth CNTs as the electromagnetic wave (EM) absorbing reinforcement, which grow on graphene substrate. The in-situ grown CNTs on graphene nanosheets lead to the enhancement of conductive and polarization loss, which results in the enhancement of absorption shielding performance. The CNTs/RGO foam composites with different CNT loading are prepared to investigate their EM shielding properties in X-band. The EM shielding effectiveness (SE) of CNTs/RGO foam composite reaches 31.2 dB with 2 mm thickness, especially the specific EMI shielding effectiveness reaches 547 dB cm(3)/g with an ultralight density of 57 mg cm(-3), the absorption is the primary shielding mechanism. Furthermore, SE value reaches 49 dB with thickness of 3.1 mm. Owing to the unique 3D foam hierarchical architecture, light density and outstanding SE performance, our work shows a promising designable approach of preparing CNTs/RGO foam composite to lightweight and absorption type EMI shielding materials. (c) 2019 Published by Elsevier Ltd.

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