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High-performance microwave absorption materials based on MoS2-graphene isomorphic hetero-structures.

Authors :
Zhang, Deqing
Jia, Yixuan
Cheng, Junye
Chen, Shengmei
Chai, Jixing
Yang, Xiuying
Wu, Zhiyu
Wang, Hao
Zhang, Wenjun
Zhao, Zhenlong
Han, Chen
Cao, Maosheng
Zheng, Guang-Ping
Source :
Journal of Alloys & Compounds. Aug2018, Vol. 758, p62-71. 10p.
Publication Year :
2018

Abstract

Two-dimensional (2D) nanomaterials have become a new class of microwave absorption (MA) materials due to their high specific surface area and peculiar electronic properties. In this study, MoS 2 /graphene 2D hybrid nanosheets with isomorphic hetero-structures are prepared by liquid exfoliation and hydrothermal reaction. Their chemical composition and morphology are characterized and their MA properties are also investigated comprehensively. The minimum reflection loss (RL) value of an absorber containing wax and 20 wt% MoS 2 /graphene hybrid nanosheets (MoS 2 /GN) is −55.3 dB at a thickness of only 1.6 mm. The largest effective absorption bandwidth is up to 5.6 GHz for an absorber containing wax and 15 wt% MoS 2 /GN at a thickness of 2.2 mm. The enhanced MA performance of MoS 2 /GN is attributed to the high electrical conductivity of graphene and the multiple MoS 2 /graphene interfaces in the heterogeneous structures. The results suggest that those light-weight MoS 2 /graphene hybrid nanosheets are very promising materials for electromagnetic wave absorbing, which can exhibit broad effective absorption bandwidth in the absorber containing low loadings of MA materials at a small thickness. Besides, the facile preparation of MoS 2 /graphene hybrid nanosheets reported in this work provides a feasible and effective approach in the synthesis of high-performance 2D MA nanomaterials. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09258388
Volume :
758
Database :
Academic Search Index
Journal :
Journal of Alloys & Compounds
Publication Type :
Academic Journal
Accession number :
129807812
Full Text :
https://doi.org/10.1016/j.jallcom.2018.05.130