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Erschienen in: Journal of Materials Science 12/2018

09.03.2018 | Composites

Design of spinous Ni/N-GN nanocomposites as novel magnetic/dielectric microwave absorbents with high-efficiency absorption performance and thin thickness

verfasst von: Linxue Zhang, Yan Zong, Zhaoxin Li, Kexun Huang, Yong Sun, Yingying Lan, Hongjing Wu, Xinghua Li, Xinliang Zheng

Erschienen in: Journal of Materials Science | Ausgabe 12/2018

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Abstract

Elaborately constructing magnetic/dielectric nanocomposites is believed to be an efficient pathway to enhance the microwave absorption performance of microwave absorbers. We reported a straightforward one-pot solvothermal route to fabricate spinous Ni grown on N-GN as fascinating magnetic/dielectric microwave absorbents. Ni nanostructures show spinous shape, which are regularly decorated on N-GN. Benefiting from the synergistic effect of magnetic spinous Ni nanostructures and dielectric lightweight N-GN, the N-GN/Ni nanocomposites possess tremendously increased microwave absorption characteristics. The N-GN/Ni nanocomposites exhibit a maximum RL of − 47.1 dB at 13.6 GHz when the thickness is only 1.6 mm, which is about 3 times larger than that of bare Ni. In particular, the effective absorption bandwidth (RL ≤ − 10 dB) of N-GN/Ni nanocomposites at 1.6 mm can reach 3.9 GHz ranging from 11.6 to 15.5 GHz. When the thickness is 1.1–5.0 mm, N-GN/Ni nanocomposites show a broad effective absorption bandwidth (RL ≤ − 10 dB) of 15.5 GHz ranging from 2.5 to 18 GHz, whereas the effective absorption bandwidth of bare Ni is only 0.7 GHz. The improved microwave absorption performance of N-GN/Ni nanocomposites is related to better impedance matching condition and higher attenuation capacity. The N-GN/Ni nanocomposites, which possess thin thickness, lightweight, strong absorption and broad bandwidth, are believed to have great potential as novel high-efficiency microwave absorbers.

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Metadaten
Titel
Design of spinous Ni/N-GN nanocomposites as novel magnetic/dielectric microwave absorbents with high-efficiency absorption performance and thin thickness
verfasst von
Linxue Zhang
Yan Zong
Zhaoxin Li
Kexun Huang
Yong Sun
Yingying Lan
Hongjing Wu
Xinghua Li
Xinliang Zheng
Publikationsdatum
09.03.2018
Verlag
Springer US
Erschienen in
Journal of Materials Science / Ausgabe 12/2018
Print ISSN: 0022-2461
Elektronische ISSN: 1573-4803
DOI
https://doi.org/10.1007/s10853-018-2200-0

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