Core-shell Fe3O4/Au nanostructures were constructed using an advanced method of two-step synthesis from Juglans regia (walnut) green husk extract. Several complementary methods were applied to investigate structural and magnetic properties of the samples. X-ray diffraction (XRD), high-resolution transmission electron microscopy (HR-TEM), electron diffraction, optical, thermogravimetric analysis (TGA), and vibrating sample magnetometer (VSM) were used for nanoparticle characterizations. As shown by HR-TEM, the mean diameter of core-shell Fe3O4/Au nanoparticles synthesized using co-precipitation method was 6.08 ± 1.06 nm. This study shows that the physical and structural properties of core-shell Fe3O4/Au nanoparticles possess intrinsic proper...
Magnetic nanoparticles are key components in many fields of science and industry. Especially in canc...
Mono-dispersed nanomaterials with combined magnetic and plasmonic properties have attracted increasi...
Background and methods: Magnetic iron oxide nanoparticles were prepared using a sonochemical method ...
Core-shell Fe3O4/Au nanostructures were constructed using an advanced method of two-step synthesis f...
Magnetite nanoparticles (Fe3O4 NPs) have received considerable attention in various biomedical appli...
Core-shell nanostructures are widely used in many fields, including medicine and the related areas. ...
Abstract Background Fe3O4-gold-chitosan core-shell na...
Superparamagnetic magnetite (Fe3O4) nanoparticles have been widely studied for various scientific an...
The use of magnetic and magnetic/gold core/shell nanoparticles in biotechnology or medicine has show...
The use of magnetic and magnetic/gold core/shell nanoparticles in biotechnology or medicine has show...
The research study focused on synthesis, characterization and applications of Fe3O4 coreshelled magn...
The core-shelled Fe3O4 magnetic nanoparticles (MNPs) have been extensively investigated by the resea...
Abstract In these recent years, magnetite (Fe3O4) has witnessed a growing interest in the scientific...
Magnetic nanoparticles are key components in many fields of science and industry. Especially in canc...
Purpose: The method of one-pot synthesis of Ag@Fe3O4 nanoparticles consisting of a spherical core of...
Magnetic nanoparticles are key components in many fields of science and industry. Especially in canc...
Mono-dispersed nanomaterials with combined magnetic and plasmonic properties have attracted increasi...
Background and methods: Magnetic iron oxide nanoparticles were prepared using a sonochemical method ...
Core-shell Fe3O4/Au nanostructures were constructed using an advanced method of two-step synthesis f...
Magnetite nanoparticles (Fe3O4 NPs) have received considerable attention in various biomedical appli...
Core-shell nanostructures are widely used in many fields, including medicine and the related areas. ...
Abstract Background Fe3O4-gold-chitosan core-shell na...
Superparamagnetic magnetite (Fe3O4) nanoparticles have been widely studied for various scientific an...
The use of magnetic and magnetic/gold core/shell nanoparticles in biotechnology or medicine has show...
The use of magnetic and magnetic/gold core/shell nanoparticles in biotechnology or medicine has show...
The research study focused on synthesis, characterization and applications of Fe3O4 coreshelled magn...
The core-shelled Fe3O4 magnetic nanoparticles (MNPs) have been extensively investigated by the resea...
Abstract In these recent years, magnetite (Fe3O4) has witnessed a growing interest in the scientific...
Magnetic nanoparticles are key components in many fields of science and industry. Especially in canc...
Purpose: The method of one-pot synthesis of Ag@Fe3O4 nanoparticles consisting of a spherical core of...
Magnetic nanoparticles are key components in many fields of science and industry. Especially in canc...
Mono-dispersed nanomaterials with combined magnetic and plasmonic properties have attracted increasi...
Background and methods: Magnetic iron oxide nanoparticles were prepared using a sonochemical method ...