Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7213103 | Composites Part B: Engineering | 2015 | 6 Pages |
Abstract
In this work, the mesoporous Fe3O4/C nanocomposites with a yolk-shell structure (Fe3O4@void@C) were prepared by a silica-assisted strategy, and their microstructure, magnetic properties, and microwave absorption were studied in detail. The BET surface area and the total pore volume of Fe3O4@void@C are 171.5 m2 gâ1 and 0.19 cm3 gâ1, respectively. The composites show a saturation magnetization of 35.4 emu/g and reduced hysteresis loss at room temperature. The Fe3O4@void@C nanocomposites exhibit the obvious complementarities between complex permittivity and permeability. A minimum reflection loss value of â18.1 dB was obtained for the absorber thickness reaching 2.0 mm, and even the Fe3O4@void@C nanocomposites possess a lower reflection loss of-10 dB under 2 GHz bandwidth. We believe that the investigations on the Fe3O4@void@C nanocomposite open up a route to develop a new type of composite, which is considered as a promising candidate for microwave absorber.
Related Topics
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Engineering
Engineering (General)
Authors
Changwu Zou, Yadong Yao, Niandong Wei, Yichao Gong, Weidong Fu, Meng Wang, Lei Jiang, Xiaoming Liao, Guangfu Yin, Zhongbin Huang, Xianchun Chen,