We report the fabrication of oriented nano-ferrofibres using a typical electrospinning process in the absence of an applied magnetic field to assist alignment. For this, a double surfacted magnetic fluid was used to optimise and enhance the charging and thereby alignment of the fibres. The induced electric field in the PVA solution assists the orientation of magnetic nanoparticles inside the fibres. The microwave resonance studies show that the ferrofibres obtained have high magnetisation values (1.2–3.7 emu g−1) and uniaxial anisotropy with high effective anisotropy field values
Nanofibers of Y- or W-type hexagonal ferrites and core–shell fibers of hexagonal ferrites and ferroe...
Electrospinning is a known process to produce nanofibers through electrostatic forces. In a typical ...
A dual-field method is described to produce aligned fibers by electrospinning. By applying a seconda...
We report the fabrication of oriented nano-ferrofibres using a typical electrospinning process in th...
Magnetic field assisted electrospinning is supplemented by conductive sheets that envelop the magnet...
Magnetic nanofibers were fabricated using polyvinyl alcohol as a shelter for magnetic nanoparticles ...
Magnetic nanofiber has been widely applied in biomedical fields due to its distinctive size, morphol...
This work investigates the effect of a magnetic field on the electrospinning of polymeric nanofibers...
Uniaxial alignment of electrospun fibers can provide a useful approach to develop novel functional n...
Electrospinning magnetic-nanoparticle-doped polymers under the influence of a magnetic field produce...
Ferromagnetic–ferroelectric nanocomposites are of interest for realizing strong strain-mediated coup...
Ferromagnetic–ferroelectric nanocomposites are of interest for realizing strong strain-mediated coup...
The preparation of superparamagnetic thin fibers by electrospinning dispersions of nanosized magneti...
The preparation of superparamagnetic thin fibers by electrospinning dispersions of nanosized magneti...
The ability of filtration and separation media containing fibres to remove impurities from oil, wate...
Nanofibers of Y- or W-type hexagonal ferrites and core–shell fibers of hexagonal ferrites and ferroe...
Electrospinning is a known process to produce nanofibers through electrostatic forces. In a typical ...
A dual-field method is described to produce aligned fibers by electrospinning. By applying a seconda...
We report the fabrication of oriented nano-ferrofibres using a typical electrospinning process in th...
Magnetic field assisted electrospinning is supplemented by conductive sheets that envelop the magnet...
Magnetic nanofibers were fabricated using polyvinyl alcohol as a shelter for magnetic nanoparticles ...
Magnetic nanofiber has been widely applied in biomedical fields due to its distinctive size, morphol...
This work investigates the effect of a magnetic field on the electrospinning of polymeric nanofibers...
Uniaxial alignment of electrospun fibers can provide a useful approach to develop novel functional n...
Electrospinning magnetic-nanoparticle-doped polymers under the influence of a magnetic field produce...
Ferromagnetic–ferroelectric nanocomposites are of interest for realizing strong strain-mediated coup...
Ferromagnetic–ferroelectric nanocomposites are of interest for realizing strong strain-mediated coup...
The preparation of superparamagnetic thin fibers by electrospinning dispersions of nanosized magneti...
The preparation of superparamagnetic thin fibers by electrospinning dispersions of nanosized magneti...
The ability of filtration and separation media containing fibres to remove impurities from oil, wate...
Nanofibers of Y- or W-type hexagonal ferrites and core–shell fibers of hexagonal ferrites and ferroe...
Electrospinning is a known process to produce nanofibers through electrostatic forces. In a typical ...
A dual-field method is described to produce aligned fibers by electrospinning. By applying a seconda...