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Core-shell structured Co@NC@MoS2 magnetic hierarchical nanotubes: Preparation and microwave absorbing properties.

Authors :
Zhang, Yunfei
Li, Yulong
Wei, Mengmeng
Yang, Dengtao
Zhang, Qiuyu
Zhang, Baoliang
Source :
Journal of Materials Science & Technology; Nov2022, Vol. 128, p148-159, 12p
Publication Year :
2022

Abstract

• A novel Co@NC@MoS 2 magnetic hierarchical nanotube is designed and prepared. • The minimum reflection loss (RL min) exceeds −61.97 dB. • The effective absorption bandwidth (EAB) covers 5.6 GHz. • The electromagnetic parameters can be adjusted by changing the load of MoS 2. In this study, a new lightweight one-dimensional absorber Co@NC@MoS 2 was designed and prepared. Firstly, polydopamine (PDA) was coated by oxidative self-polymerization with cobalt-nitrilotriacetic acid chelate nanowires (Co-NTAC) as template. Then core-shell structured magnetic hierarchical nanotubes (Co@PDA@MoS 2) were prepared by one-step hydrothermal method. After thermal annealing, PDA layer was transformed into nitrogen doped carbon layer (NC) to obtain the efficient microwave absorber Co@NC@MoS 2. The removal of template and growth of MoS 2 were completed simultaneously, the preparation process was simplified. Because of its good magnetic loss and dielectric loss, Co@NC@MoS 2 shows excellent microwave absorption performance. Under filler content of 15 wt.%, the minimum reflection loss (RL min) can reach -61.97 dB@9.2 GHz, and the effective absorption bandwidth (EAB) is 5.6 GHz. The electromagnetic parameters of Co@NC@MoS 2 can be further adjusted by changing the load of MoS 2. Meanwhile, the structure and composition of Co@NC@MoS 2 were systematically analyzed. The influence of the microstructure on the microwave absorbing properties was investigated, and the microwave attenuation mechanism is revealed. As an efficient and lightweight absorber, Co@NC@MoS 2 has potential application value in the construction of new stealth coatings. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
10050302
Volume :
128
Database :
Supplemental Index
Journal :
Journal of Materials Science & Technology
Publication Type :
Periodical
Accession number :
157864756
Full Text :
https://doi.org/10.1016/j.jmst.2022.04.026