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Research Article

Rational construction of graphene oxide with MOF-derived porous NiFe@C nanocubes for high-performance microwave attenuation

Zhihong Yang1( )Hualiang Lv1Renbing Wu2 ( )
College of Materials Science and TechnologyNanjing University of Aeronautics and AstronauticsNanjing211100China
Department of Materials ScienceFudan UniversityShanghai200433China
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Abstract

Exploring lightweight microwave attenuation materials with strong and tunable wideband microwave absorption is highly desirable but remains a significant challenge. Herein, three-dimensional (3D) porous hybrid composites consisting of NiFe nanoparticles embedded within carbon nanocubes decorated on graphene oxide (GO) sheets (NiFe@C nanocubes@GO) as high-performance microwave attenuation materials have been rationally synthesized. The 3D porous hybrid composites are fabricated by a simple method, which involves one-step pyrolysis of NiFe Prussian blue analogue nanocubes in the presence of GO sheets. Benefiting from the unique structural features that exhibit good magnetic and dielectric losses as well as a proper impedance match, the resulting NiFe@C nanocubes@GO composites show excellent microwave attenuation ability. With a minimum reflection loss (RL) of–51 dB at 7.7 GHz at a thickness of 2.8 mm and maximum percentage bandwidth of 38.6% for RL < –10 dB at a thickness of 2.2 mm, the NiFe@C nanocubes@GO composites are superior to the previously reported state-of-the-art carbon-based microwave attenuation materials.

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Nano Research
Pages 3671-3682

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Cite this article:
Yang Z, Lv H, Wu R. Rational construction of graphene oxide with MOF-derived porous NiFe@C nanocubes for high-performance microwave attenuation. Nano Research, 2016, 9(12): 3671-3682. https://doi.org/10.1007/s12274-016-1238-z
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Received: 08 June 2016
Revised: 25 July 2016
Accepted: 26 July 2016
Published: 10 September 2016
© Tsinghua University Press and Springer-Verlag Berlin Heidelberg 2016