Shenyang National Laboratory for Materials Science, Institute of Metal Research, and International Centre for Materials Physics, Chinese Academy of Sciences, 72 Wenhua Road, Shenyang, 110016, People's Republic of China.
Nanoscale Res Lett. 2012 May 1;7(1):238. doi: 10.1186/1556-276X-7-238.
The microwave absorption properties of Ni/(C, silicides) nanocapsules prepared by an arc discharge method have been studied. The composition and the microstructure of the Ni/(C, silicides) nanocapsules were determined by means of X-ray diffraction, X-ray photoelectric spectroscopy, and transmission electron microscope observations. Silicides, in the forms of SiOx and SiC, mainly exist in the shells of the nanocapsules and result in a large amount of defects at the 'core/shell' interfaces as well as in the shells. The complex permittivity and microwave absorption properties of the Ni/(C, silicides) nanocapsules are improved by the doped silicides. Compared with those of Ni/C nanocapsules, the positions of maximum absorption peaks of the Ni/(C, silicides) nanocapsules exhibit large red shifts. An electric dipole model is proposed to explain this red shift phenomenon.
采用电弧放电法制备的 Ni/(C、硅化物)纳米胶囊的微波吸收性能已经过研究。通过 X 射线衍射、X 射线光电子能谱和透射电子显微镜观察确定了 Ni/(C、硅化物)纳米胶囊的组成和微观结构。硅化物以 SiOx 和 SiC 的形式主要存在于纳米胶囊的壳层中,在“核/壳”界面以及壳层中产生大量缺陷。掺杂硅化物可提高 Ni/(C、硅化物)纳米胶囊的复介电常数和微波吸收性能。与 Ni/C 纳米胶囊相比,Ni/(C、硅化物)纳米胶囊的最大吸收峰位置发生了较大的红移。提出了电偶极子模型来解释这种红移现象。