Enhanced electromagnetic wave absorption of Ni-C core-shell nanoparticles by HCP-Ni phase

被引:22
|
作者
Kuang, Daitao [1 ,2 ]
Hou, Lizhen [3 ]
Wang, Shiliang [2 ,4 ]
Yu, Bowen [4 ]
Deng Lianwen [2 ]
Lin, Liangwu [5 ]
Huang, Han [4 ]
He, Jun [2 ]
Song, Min [1 ]
机构
[1] Cent S Univ, State Key Lab Powder Met, Changsha 410083, Hunan, Peoples R China
[2] Cent S Univ, Sch Phys & Elect, Changsha 410083, Hunan, Peoples R China
[3] Hunan Normal Univ, Coll Phys & Elect Sci, Changsha 410081, Hunan, Peoples R China
[4] Univ Queensland, Sch Mech & Min Engn, Brisbane, Qld 4072, Australia
[5] Cent S Univ, Sci & Technol High Strength Struct Mat Lab, Changsha 410083, Hunan, Peoples R China
来源
MATERIALS RESEARCH EXPRESS | 2018年 / 5卷 / 09期
基金
中国国家自然科学基金;
关键词
nickel; carbon; core-shell; nanoparticle; electromagnetic wave absorption; MICROWAVE-ABSORPTION; COBALT NANOPARTICLES; NICKEL; PERFORMANCE; GRAPHENE; COMPOSITES; NANOCAPSULES; NANOFLAKES; GROWTH; SIZE;
D O I
10.1088/2053-1591/aad661
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The strategy of phase control has been playing an important role in optimizing the electromagnetic wave (EMW) absorption properties. Here, Ni nanoparticles (NPs) with two phases, hexagonal close-packed Ni (HCP-Ni) and face-centered cubic (FCC-Ni), coated by C shells are synthesized by metal-organic chemical vapor deposition. The average size of the Ni nanocores and thickness of C shells are about 10 and 4 nm, respectively. After blended with paraffin wax at a mass ratio of 1:5, the Ni-C core- shell NPs exhibit excellent EMW absorption properties with an optimal reflection loss of -52.6 dB and a large effective bandwidth (BWeff) of 9.3 GHz. The core-shell NPs annealed in vacuum to remove the metastable HCP-Ni exhibit degraded EMW absorption properties. Comparative analyses reveal that the HCP-Ni phase in the core-shell NPs can enhance the dielectric loss and thus improve the impedance matching, suggesting that phase control should be a practicable strategy for optimizing the properties of Ni-based EMW absorption materials.
引用
收藏
页数:12
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