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Synthesis and Functionalization of 3D Nano-graphene Materials: Graphene Aerogels and Graphene Macro Assemblies
Published on: November 5, 2015
Carbon nanofiber-reinforced 3D porous aerogels for tunable low-frequency electromagnetic wave absorption
Xiying Shen1, Pinshu Wang1,2, Yu Chen1
1School of Chemistry and Materials Science, Jiangsu Key Laboratory of New Energy Devices & Interface Science, Nanjing University of Information Science & Technology, Nanjing 210044, China.
Abstract:
One of the main challenges electromagnetic (EM) wave absorption materials face is the difficulty to expand the effective bandwidth. Given that, here in this work, three-dimensional porous carbon-based composite aerogels were constructed by the strategy of "carbon nanofiber-assisted pyrolysis of melamine-formaldehyde resin", which not only effectively reduces the material density but also promotes multiple scattering, establishes a continuous conductive network, introduces rich C/C hetero-interfaces, and achieves synergistic multi-mechanism loss. At a thickness of 3.5 mm, the MD-CFPC2 sample achieves a minimum reflection loss of -42.38 dB at 6.26 GHz, and the effective absorption bandwidth (RL ≤ -10 dB) covers more than 70% of the 2-18 GHz range, showing excellent low-frequency tunability. This work demonstrates the importance of design and control of pore structures in broadening the bandwidth of carbon-based EM wave absorption materials.

