This report is on the growth of Fe3O4 nanofilms on Al2O3(0001) and MgO(001) substrates with and without the presence of an external magnetic field using a pulsed injection metallorganic chemical vapour deposition (PI MOCVD) technique. The effects of growing magnetic oxide nanofilms in a 1 T field have been examined using various instrumental methods. It was found that the application of a magnetic field during PI MOCVD does not drastically alter the crystalline texture, surface morphology, and film thickness, but it significantly modifies the Fe3O4 film magnetisation and coercive field. Moreover, it was shown that the application of a 1 T field during the cooling of the sample also improves the magnetic properties. We believe that the large...
Currently, there is an enormous need for flexible electronic devices given their astonishing compete...
We report a systematic study of <100> epitaxial films of magnetite (Fe3O4) of thickness 300-20...
Magnetic oxides have become of interest source for spin transport devices due to their high spin pol...
This report is on the growth of Fe3O4 nanofilms on Al2O3(0001) and MgO(001) substrates with and with...
We report on large external magnetic field effects during pulsed injection metal-organic chemical va...
Magnetite (Fe3O4) is of both scientific and technological interest because of its fascinating magnet...
Magnetic field-assisted CVD offers a direct pathway to manipulate the evolution of microstructure, p...
We have investigated the magnetic and transport properties of nanoscaled Fe3O4 films obtained from C...
Magnetic field-assisted CVD offers a direct pathway to manipulate the evolution of microstructure, p...
Magnetite (Fe3O4) of high quality was prepared by combining atomic layer deposition (ALD) with a sub...
Molecular beam epitaxy is widely used for engineering low-dimensional materials. Here, we present a ...
Nanocrystalline magnetite Fe3O4 films of about 180 nm thick have been deposited on Si~100! substrate...
A comparative study of magnetocaloric effect (MCE) near Verwey transition temperature, T-V = 120 K, ...
Schemme T, Krampf A, Bertram F, Kuschel T, Kuepper K, Wollschläger J. Modifying magnetic properties ...
Chemical vapor deposition of iron pentacarbonyl (Fe(CO)(5)) in an external magnetic field (B = 1.00 ...
Currently, there is an enormous need for flexible electronic devices given their astonishing compete...
We report a systematic study of <100> epitaxial films of magnetite (Fe3O4) of thickness 300-20...
Magnetic oxides have become of interest source for spin transport devices due to their high spin pol...
This report is on the growth of Fe3O4 nanofilms on Al2O3(0001) and MgO(001) substrates with and with...
We report on large external magnetic field effects during pulsed injection metal-organic chemical va...
Magnetite (Fe3O4) is of both scientific and technological interest because of its fascinating magnet...
Magnetic field-assisted CVD offers a direct pathway to manipulate the evolution of microstructure, p...
We have investigated the magnetic and transport properties of nanoscaled Fe3O4 films obtained from C...
Magnetic field-assisted CVD offers a direct pathway to manipulate the evolution of microstructure, p...
Magnetite (Fe3O4) of high quality was prepared by combining atomic layer deposition (ALD) with a sub...
Molecular beam epitaxy is widely used for engineering low-dimensional materials. Here, we present a ...
Nanocrystalline magnetite Fe3O4 films of about 180 nm thick have been deposited on Si~100! substrate...
A comparative study of magnetocaloric effect (MCE) near Verwey transition temperature, T-V = 120 K, ...
Schemme T, Krampf A, Bertram F, Kuschel T, Kuepper K, Wollschläger J. Modifying magnetic properties ...
Chemical vapor deposition of iron pentacarbonyl (Fe(CO)(5)) in an external magnetic field (B = 1.00 ...
Currently, there is an enormous need for flexible electronic devices given their astonishing compete...
We report a systematic study of <100> epitaxial films of magnetite (Fe3O4) of thickness 300-20...
Magnetic oxides have become of interest source for spin transport devices due to their high spin pol...