| Literature DB >> 23641952 |
Li Zhang1, Sen Qin, Xing Wang, Jianliang Xie, Longjiang Deng.
Abstract
The high-frequency properties of the FeCo-SiO2 monolayer nanogranular films and FeCo/(FeCo)0.63(SiO2)0.37 multilayer nanogranular films which were elaborated on flexible substrates by magnetron sputtering system were studied. Compared to the monolayer films with the same FeCo content, the multilayer structures comprised of FeCo/(FeCo)0.63(SiO2)0.37 exhibit more excellent properties that the real and imaginary parts of permeability, more than the double value of the monolayer, increase to 250 and 350, respectively. The variation was considered owing to the reduction of the anisotropy field.Entities:
Year: 2013 PMID: 23641952 PMCID: PMC3655025 DOI: 10.1186/1556-276X-8-212
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Figure 1Top-view TEM image and electron diffraction pattern of films: (a) FeCo-SiOmonolayer, (b) FeCo/(FeCo)(SiO)multilayer.
Figure 2Cross-sectional scanning electron microscopy (SEM) images of FeCo/(FeCo)(SiO2)film. Prepared by focused ion beam sectioning polished at 30 keV (the design thickness of the FeCo layer was 10 nm, and the FeCo-SiO2layer was 20 nm).
Figure 3Hysteresis loops for monolayer and multilayer films.
Figure 4The complex permeability of the films: (a) FeCo-SiOmonolayer, (b) FeCo/(FeCo)(SiO)multilayer.