Free nanoparticles of iron (Fe) and their colloids with high saturation magnetization are in demand for medical and microfluidic applications. However, the oxide layer that forms during processing has made such synthesis a formidable challenge. Lowering the synthesis temperature decreases rate of oxidation and hence provides a new way of producing pure metallic nanoparticles prone to oxidation in bulk amount (large quantity). In this paper we have proposed a methodology that is designed with the knowledge of thermodynamic imperatives of oxidation to obtain almost oxygen-free iron nanoparticles, with or without any organic capping by controlled milling at low temperatures in a specially designed high-energy ball mill with the possibility of ...
The current studies deals with the science on atomic scale i.e. nanotechnology which is a multidisci...
The assembly of magnetic cores into regular structures may notably influence the properties displaye...
Magnetic nanoparticles attract increasing attention because of their current and potential biomedica...
SUMMARY- The magnetic properties of materials deteriorate when the particle size reaches the superpa...
Oral presentation given at the International Magnetics Conference (INTERMAG Europe 2017), held in Du...
The properties of magnetic nanoparticles vary dramatically with size, so reproducibly controlling s...
Manganese ferrite nanoparticles were synthesized using a High-Energy Ball-Milling mechanochemical me...
Cooling solutions are the immediate need for most applications, from large scale factories, to hand ...
antiferromagnetic materials) have many promising industrial and biomedical applications such as cata...
In the present study, iron oxide nanoparticles (primary particle size of 80-90 nm) with controlled o...
Stable iron nanoparticles have been synthesized from naturally occurring and abundant Fe-containing ...
The application of magnetic nanoparticles requires large amounts of materials of reproducible qualit...
Magnetic nano particles are of great interest for researchers from a wide range of disciplines, incl...
Magnetic iron oxide nanoparticles have been synthesized by an hydrothermal method using three differ...
Iron based nanoparticles are one of the most applicable and studied nanostructures in various scienc...
The current studies deals with the science on atomic scale i.e. nanotechnology which is a multidisci...
The assembly of magnetic cores into regular structures may notably influence the properties displaye...
Magnetic nanoparticles attract increasing attention because of their current and potential biomedica...
SUMMARY- The magnetic properties of materials deteriorate when the particle size reaches the superpa...
Oral presentation given at the International Magnetics Conference (INTERMAG Europe 2017), held in Du...
The properties of magnetic nanoparticles vary dramatically with size, so reproducibly controlling s...
Manganese ferrite nanoparticles were synthesized using a High-Energy Ball-Milling mechanochemical me...
Cooling solutions are the immediate need for most applications, from large scale factories, to hand ...
antiferromagnetic materials) have many promising industrial and biomedical applications such as cata...
In the present study, iron oxide nanoparticles (primary particle size of 80-90 nm) with controlled o...
Stable iron nanoparticles have been synthesized from naturally occurring and abundant Fe-containing ...
The application of magnetic nanoparticles requires large amounts of materials of reproducible qualit...
Magnetic nano particles are of great interest for researchers from a wide range of disciplines, incl...
Magnetic iron oxide nanoparticles have been synthesized by an hydrothermal method using three differ...
Iron based nanoparticles are one of the most applicable and studied nanostructures in various scienc...
The current studies deals with the science on atomic scale i.e. nanotechnology which is a multidisci...
The assembly of magnetic cores into regular structures may notably influence the properties displaye...
Magnetic nanoparticles attract increasing attention because of their current and potential biomedica...