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Enhancing electromagnetic wave absorption in carbon fiber using FeS2 nanoparticles.

Authors :
Guo, Yuying
Zhang, Meng
Cheng, Tingting
Xie, Yuxin
Zhao, Laibin
Jiang, Liang
Zhao, Wenxin
Yuan, Liying
Meng, Alan
Zhang, Jian
Wang, Ting
Li, Zhenjiang
Source :
Nano Research; Jul2023, Vol. 16 Issue 7, p9591-9601, 11p
Publication Year :
2023

Abstract

Carbon-based electromagnetic wave absorbing materials (absorbers) adhered with metallic sulfide nanoparticles of good electrical conductivity attract increasing researchers' attention. In this study, on the basis of carbon fiber (C<subscript>f</subscript>)@Fe<subscript>3</subscript>O<subscript>4</subscript> nanocomposites obtained by the electrostatic spinning and reflow method, C<subscript>f</subscript>@FeS<subscript>2</subscript> nanocomposite was successfully prepared during a further hydrothermal process. The products exhibit excellent electromagnetic wave absorption performances with a minimum reflection loss (RL<subscript>min</subscript>) of −54.11 dB at 2.13 mm matching thickness. At the same time, the optimal effective absorption bandwidth (EAB) value of 6.04 GHz at a thickness of 1.98 mm covers the whole Ku band, suggesting its excellent electromagnetic wave absorption performances. In addition, the interlaced network structure constructed by carbon fiber, outstanding conductivity of FeS<subscript>2</subscript> nanoparticles, and interfacial polarization from hetero-structure play significant parts in enhancing the electromagnetic parameters and absorption performances. All these results suggest that the C<subscript>f</subscript>@FeS<subscript>2</subscript> nanocomposites can be taken as a new electromagnetic wave-absorbing material under their low density, simple craft, and strong absorption characteristics. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
19980124
Volume :
16
Issue :
7
Database :
Complementary Index
Journal :
Nano Research
Publication Type :
Academic Journal
Accession number :
169750843
Full Text :
https://doi.org/10.1007/s12274-023-5776-x