Unique magnetic properties and magnetization reversal process of CoFe2O4 nanotubes fabricated by electrospinning.

@article{Fu2012UniqueMP,
  title={Unique magnetic properties and magnetization reversal process of CoFe2O4 nanotubes fabricated by electrospinning.},
  author={Jiecai Fu and Junli Zhang and Yong Peng and Jianguo Zhao and Guoguo Tan and Nigel J. Mellors and Erqing Xie and Weihua Han},
  journal={Nanoscale},
  year={2012},
  volume={4 13},
  pages={
          3932-6
        }
}
CoFe(2)O(4) nanotubes have been directly fabricated by single-capillary spinneret electrospinning. The external diameter of the CoFe(2)O(4) nanotubes ranges from 60 nm to 160 nm. The morphology and structure characterizations show that individual CoFe(2)O(4) nanotubes are made of CoFe(2)O(4) nanocrystals stacking along the nanotubes with no preferred growth directions and these individual nanocrystals are single crystal with a cubic spinel structure. Each nanocrystal was shown to be a single… 
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References

SHOWING 1-10 OF 40 REFERENCES
Nanoscale characterization and magnetic reversal mechanism investigation of electrospun NiFe2O4 multi-particle-chain nanofibres.
TLDR
It is believed that this work will significantly expand the use and application of these compounds in the field of biomagnetic nano-devices and improve understanding of the magnetic origin of spinel ferrites.
Effects of surface coordination chemistry on the magnetic properties of MnFe(2)O(4) spinel ferrite nanoparticles.
TLDR
The correlations suggest the decrease in spin-orbital couplings and surface anisotropy of magnetic nanoparticles due to the surface coordination, which clearly shows the dependence on the size of nanoparticles.
Microstructural investigation of magnetic CoFe2O4 nanowires inside carbon nanotubes by electron tomography.
TLDR
It is shown that the size of the CoFe 2O4 monocrystalline particles is closely dependent on the location of the particle within the nanotube, i.e., small particles close to the tube tip and bigger particles inside the tube channel, as well as its residual porosity.
BaFe12O19 single-particle-chain nanofibers: preparation, characterization, formation principle, and magnetization reversal mechanism.
BaFe(12)O(19) single-particle-chain nanofibers have been successfully prepared by an electrospinning method and calcination process, and their morphology, chemistry, and crystal structure have been
Temperature effect on electrospinning of nanobelts: the case of hafnium oxide.
TLDR
It was found that the rapid evaporation of solvent played an important role in the formation process of HfO(2) nanobelts, and it was shown that nanOBelts can only be obtained with the temperature higher than 50 °C and they are in the high quality monoclinic phase.
Magnetization processes in nickel and cobalt electrodeposited nanowires
We report on the magnetic properties of arrays of submicronic (35 nm-500 nm) Ni and Co wires fabricated by electrodeposition into the cylindrical pores of track-etched polymer membranes. This work
Multiferroic BaTiO3-CoFe2O4 Nanostructures
TLDR
Thermodynamic analyses show that the magnetoelectric coupling in a nanostructured BaTiO3-CoFe2O4 ferroelectromagnet can be understood on the basis of the strong elastic interactions between the two phases.
Fabrication of CoFe2O4 hollow fibers by direct annealing of the electrospun composite fibers and their magnetic properties
CoFe2O4 hollow fibers have been fabricated by direct annealing of electrospun polyvinylpyrrolidone (PVP)/nitrate salts composite nanofibers. In this approach, composite fibers were firstly
Preparation of one-dimensional CoFe2O4 nanostructures and their magnetic properties
Cobalt ferrite one-dimensional nanostructures (nanoribbons and nanofibers) were prepared by electrospinning combined with sol−gel technology. The nanoribbons and nanofibers were formed through
...
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