A broad spectrum of nanomaterials has been investigated for multiple purposes in recent years. Some of these studied materials are magnetics nanoparticles (MNPs). Iron oxide nanoparticles (IONPs) and superparamagnetic iron oxide nanoparticles (SPIONs) are MNPs that have received extensive attention because of their physicochemical and magnetic properties and their ease of combination with organic or inorganic compounds. Furthermore, the arresting of these MNPs into a cross-linked matrix known as hydrogel has attracted significant interest in the biomedical field. Commonly, MNPs act as a reinforcing material for the polymer matrix. In the present review, several methods, such as co-precipitation, polyol, hydrothermal, microemulsion, and sol-...
The current studies deals with the science on atomic scale i.e. nanotechnology which is a multidisci...
Iron oxide-based magnetic nanoparticles (IONP) that display high saturation and high magnetic suscep...
Magnetic nanoparticle systems can be divided into single-core nanoparticles (with only one magnetic ...
Stimuli-responsive polymers have potential in drug delivery and tissue engineering applications, as ...
The current nanotechnology era is marked by the emergence of various magnetic inorganic nanometer-si...
This study describes a preparation of magnetite nanoparticle by co-precipitation of Fe(II) and Fe(II...
The current nanotechnology era is marked by the emergence of various magnetic inorganic nanometer-si...
Magnetic nanoparticles (MNPs) have potential biomedical applications as efficient mediators for AC-m...
Currently, magnetic nanoparticles are widely studied with regard to their application in cancer trea...
This study shows the successful synthesis and characterization of a novel material that is composed ...
A novel nanocomposite system composed of hydrophobically modified ethoxylated urethane (so-called HE...
A novel nanocomposite system composed of hydrophobically modified ethoxylated urethane (so-called HE...
A novel nanocomposite system composed of hydrophobically modified ethoxylated urethane (so-called HE...
Composites of magnetite nanoparticles encapsulated with polymers attract interest for many applicati...
We report a simple and green procedure for the preparation of magnetic iron oxide nanocrystals via s...
The current studies deals with the science on atomic scale i.e. nanotechnology which is a multidisci...
Iron oxide-based magnetic nanoparticles (IONP) that display high saturation and high magnetic suscep...
Magnetic nanoparticle systems can be divided into single-core nanoparticles (with only one magnetic ...
Stimuli-responsive polymers have potential in drug delivery and tissue engineering applications, as ...
The current nanotechnology era is marked by the emergence of various magnetic inorganic nanometer-si...
This study describes a preparation of magnetite nanoparticle by co-precipitation of Fe(II) and Fe(II...
The current nanotechnology era is marked by the emergence of various magnetic inorganic nanometer-si...
Magnetic nanoparticles (MNPs) have potential biomedical applications as efficient mediators for AC-m...
Currently, magnetic nanoparticles are widely studied with regard to their application in cancer trea...
This study shows the successful synthesis and characterization of a novel material that is composed ...
A novel nanocomposite system composed of hydrophobically modified ethoxylated urethane (so-called HE...
A novel nanocomposite system composed of hydrophobically modified ethoxylated urethane (so-called HE...
A novel nanocomposite system composed of hydrophobically modified ethoxylated urethane (so-called HE...
Composites of magnetite nanoparticles encapsulated with polymers attract interest for many applicati...
We report a simple and green procedure for the preparation of magnetic iron oxide nanocrystals via s...
The current studies deals with the science on atomic scale i.e. nanotechnology which is a multidisci...
Iron oxide-based magnetic nanoparticles (IONP) that display high saturation and high magnetic suscep...
Magnetic nanoparticle systems can be divided into single-core nanoparticles (with only one magnetic ...