Magnetite nanoparticles in the range 7e10.5 nm were prepared by non hydrolytic solegel (NHSG) process in the presence of benzyl alcohol in different concentrations. The suspensions were mixed with bisphenol A diglycidyl ether (DGEBA) and cured in the presence of ytterbium(III) trifluoromethanesulfonate as cationic initiator. Magnetite nanoparticles and epoxy nanocomposites were characterized by structural, chemical and magnetic techniques. A procedure of data analysis is proposed to determine value, sign and surface contribution of the magnetic anisotropy of nanoparticles by comparing the information gained from field-cooled/zero-field-cooled magnetization curves and TEM images. Above blocking temperature, the nanoparticles dispersed...
In this work, the bulk and surface composition of Fe3O4 supermagnetic nanoparticles were modified fo...
Magnetite nanoparticles having mean diameter of about 8 nm have been prepared by a thermo-chemical r...
Manganese iron oxide (MnFe2O4) nanoparticles successfully served as nanofillers for obtaining magnet...
Magnetite nanoparticles in the range 7-10.5 nm were prepared by non hydrolytic sol-gel (NHSG) proces...
Magnetite nanoparticles in the range 7-10.5 nm were prepared by non hydrolytic sol-gel (NHSG) proces...
Magnetite nanoparticles are prepared by non-hydrolytic sol-gel process in the presence of iron(III)-...
Superparamagnetic nanocomposites were obtained by dispersion of oleic acid (OA)-coated magnetite NPs...
Magnetite nanoparticles were prepared by a non-hydrolytic sol–gel (NHSG) process in the presence of...
Magnetic epoxy polymer nanocomposites (PNCs) reinforced with magnetite (Fe 3O 4) nanoparticles (NPs)...
A hydrogenated derivative of diglycidylether of bisphenol A (HDGEBA) has been successfully employed ...
Magnetic epoxy polymer nanocomposites (PNCs) reinforced with magnetite (Fe<sub>3</sub>O<sub>4</sub>)...
Innovative magnetite\u2013epoxy nanocomposites were prepared starting from magnetite nanoparticles s...
Abstract: Innovative magnetite–epoxy nanocomposites were prepared starting from magnetite nanopartic...
The new function of polypyrrole (PPy) to serve as a coupling agent has been demonstrated in preparin...
In this work, the bulk and surface composition of Fe3O4 supermagnetic nanoparticles were modified fo...
Magnetite nanoparticles having mean diameter of about 8 nm have been prepared by a thermo-chemical r...
Manganese iron oxide (MnFe2O4) nanoparticles successfully served as nanofillers for obtaining magnet...
Magnetite nanoparticles in the range 7-10.5 nm were prepared by non hydrolytic sol-gel (NHSG) proces...
Magnetite nanoparticles in the range 7-10.5 nm were prepared by non hydrolytic sol-gel (NHSG) proces...
Magnetite nanoparticles are prepared by non-hydrolytic sol-gel process in the presence of iron(III)-...
Superparamagnetic nanocomposites were obtained by dispersion of oleic acid (OA)-coated magnetite NPs...
Magnetite nanoparticles were prepared by a non-hydrolytic sol–gel (NHSG) process in the presence of...
Magnetic epoxy polymer nanocomposites (PNCs) reinforced with magnetite (Fe 3O 4) nanoparticles (NPs)...
A hydrogenated derivative of diglycidylether of bisphenol A (HDGEBA) has been successfully employed ...
Magnetic epoxy polymer nanocomposites (PNCs) reinforced with magnetite (Fe<sub>3</sub>O<sub>4</sub>)...
Innovative magnetite\u2013epoxy nanocomposites were prepared starting from magnetite nanoparticles s...
Abstract: Innovative magnetite–epoxy nanocomposites were prepared starting from magnetite nanopartic...
The new function of polypyrrole (PPy) to serve as a coupling agent has been demonstrated in preparin...
In this work, the bulk and surface composition of Fe3O4 supermagnetic nanoparticles were modified fo...
Magnetite nanoparticles having mean diameter of about 8 nm have been prepared by a thermo-chemical r...
Manganese iron oxide (MnFe2O4) nanoparticles successfully served as nanofillers for obtaining magnet...