We have investigated the magnetic and transport properties of nanoscaled Fe3O4 films obtained from Chemical Vapor Deposition (CVD) technique using [(FeFe2III)-Fe-II(OBut)(8)] and [Fe-2(III)(OBut)(6)] precursors. Samples were deposited on different substrates (i.e., MgO (001), MgAl2O4 (001) and Al2O3 (0001)) with thicknesses varying from 50 to 350 nm. Atomic Force Microscopy analysis indicated a granular nature of the samples, irrespective of the synthesis conditions (precursor and deposition temperature, T-pre) and substrate. Despite the similar morphology of the films, magnetic and transport properties were found to depend on the precursor used for deposition. Using [(FeFe2III)-Fe-II(OBut)(8)] as precursor resulted in lower resistivity, hi...
We report the magnetotransport properties of a 40 nm-thick Fe3O4 thin film grown on a MgO (0 0 1) su...
Magnetite (Fe3O4) of high quality was prepared by combining atomic layer deposition (ALD) with a sub...
Текст статьи не публикуется в открытом доступе в соответствии с политикой журнала.The structural, ma...
We have investigated the magnetic and transport properties of nanoscaled Fe3O4 films obtained from C...
Magnetic oxides have become of interest source for spin transport devices due to their high spin pol...
This work describes the synthesis of high quality of epitaxial Fe3O4 ultrathin films and characteriz...
The present study is a comparison of the resistive and magnetic properties of ultrathin epitaxial Fe...
Fe3O4 nanowires have been fabricated based on Fe3O4 thin films grown on a-Al2O3 s0001d substrates us...
Magnetite (Fe3O4) is of both scientific and technological interest because of its fascinating magnet...
The magnetic and transport properties of Fe3O4 films with a series of thicknesses are investigated. ...
This report is on the growth of Fe3O4 nanofilms on Al2O3(0001) and MgO(001) substrates with and with...
Nanocrystalline magnetite (Fe3O4) films with various preferred crystallite orientations were grown o...
Nanocrystalline magnetite Fe3O4 films of about 180 nm thick have been deposited on Si~100! substrate...
In this paper, we demonstrate that films of magnetite, Fe3O4, can be deposited by the electrochemica...
At room temperature, polycrystalline Fe3O4 films with thicknesses in the range 5-1120 nm have been p...
We report the magnetotransport properties of a 40 nm-thick Fe3O4 thin film grown on a MgO (0 0 1) su...
Magnetite (Fe3O4) of high quality was prepared by combining atomic layer deposition (ALD) with a sub...
Текст статьи не публикуется в открытом доступе в соответствии с политикой журнала.The structural, ma...
We have investigated the magnetic and transport properties of nanoscaled Fe3O4 films obtained from C...
Magnetic oxides have become of interest source for spin transport devices due to their high spin pol...
This work describes the synthesis of high quality of epitaxial Fe3O4 ultrathin films and characteriz...
The present study is a comparison of the resistive and magnetic properties of ultrathin epitaxial Fe...
Fe3O4 nanowires have been fabricated based on Fe3O4 thin films grown on a-Al2O3 s0001d substrates us...
Magnetite (Fe3O4) is of both scientific and technological interest because of its fascinating magnet...
The magnetic and transport properties of Fe3O4 films with a series of thicknesses are investigated. ...
This report is on the growth of Fe3O4 nanofilms on Al2O3(0001) and MgO(001) substrates with and with...
Nanocrystalline magnetite (Fe3O4) films with various preferred crystallite orientations were grown o...
Nanocrystalline magnetite Fe3O4 films of about 180 nm thick have been deposited on Si~100! substrate...
In this paper, we demonstrate that films of magnetite, Fe3O4, can be deposited by the electrochemica...
At room temperature, polycrystalline Fe3O4 films with thicknesses in the range 5-1120 nm have been p...
We report the magnetotransport properties of a 40 nm-thick Fe3O4 thin film grown on a MgO (0 0 1) su...
Magnetite (Fe3O4) of high quality was prepared by combining atomic layer deposition (ALD) with a sub...
Текст статьи не публикуется в открытом доступе в соответствии с политикой журнала.The structural, ma...