Among many possible fields of application, membrane technology is very valuable for biological and medical purposes. As a young field with high potential for further expansion, it is of great interest for researches. This chapter presents preparation and characterization of magnetic nanocomposite membranes. Ethylcellulose-strontium ferrite (EC-SrFe12O19) nanocomposites were prepared via solvent casting method with applied low magnetic field. In order to identify morphological and topological changes induced by membrane processing, scanning electron microscopy (FESEM) and atomic force microscopy (AFM) were performed. Orientation of nanoparticles and formation of two-phase structure caused by the influence of magnetic field were observed. Inf...
A nanocomposite magnetic material was developed using iron nanoparticles with a diameter of less tha...
Fokus ove doktorske disertacije je na pripremi i karakterizaciji magnetnihnanokompozitnih membrana z...
Please take our one minute survey! This Thesis is brought to you for free and open access by the The...
This thesis is dedicated to understanding the mechanism of the in situ synthesis of magnetic nanocom...
In this work, separation of disperse dyes and polyethylene glycol (PEG) as organic contaminant by na...
Ferrite nanoparticles with nominal composition Me0.5Fe2.5O4 (Me = Co, Fe, Ni or Mn) have been succes...
This study presents preparation and characterization of ethyl cellulose based nanocomposites. Succes...
Barium ferrite (BFO) is a class of hard magnetic materials which is technologically important for ma...
We have explored the synthesis of iron oxide particles, tubes, and fibrils within the pores of nanop...
Superparamagnetic cellulosics were prepared by the in situ synthesis of nanoscale ferrites. The inte...
Two new methods for the fabrication of porous membranes were studied. Ceramic membranes were obtaine...
We have explored the synthesis of iron oxide particles, tubes, and fibrils within the pores of nanop...
This work analyzes on nanoscale spatial domains the mechanical features of electrospun membranes of ...
AbstractIn the water desalination technology, utilizing nanocomposite membranes have been an interes...
One of the most challenging goals in nanoparticle research is to develop successful protocols for th...
A nanocomposite magnetic material was developed using iron nanoparticles with a diameter of less tha...
Fokus ove doktorske disertacije je na pripremi i karakterizaciji magnetnihnanokompozitnih membrana z...
Please take our one minute survey! This Thesis is brought to you for free and open access by the The...
This thesis is dedicated to understanding the mechanism of the in situ synthesis of magnetic nanocom...
In this work, separation of disperse dyes and polyethylene glycol (PEG) as organic contaminant by na...
Ferrite nanoparticles with nominal composition Me0.5Fe2.5O4 (Me = Co, Fe, Ni or Mn) have been succes...
This study presents preparation and characterization of ethyl cellulose based nanocomposites. Succes...
Barium ferrite (BFO) is a class of hard magnetic materials which is technologically important for ma...
We have explored the synthesis of iron oxide particles, tubes, and fibrils within the pores of nanop...
Superparamagnetic cellulosics were prepared by the in situ synthesis of nanoscale ferrites. The inte...
Two new methods for the fabrication of porous membranes were studied. Ceramic membranes were obtaine...
We have explored the synthesis of iron oxide particles, tubes, and fibrils within the pores of nanop...
This work analyzes on nanoscale spatial domains the mechanical features of electrospun membranes of ...
AbstractIn the water desalination technology, utilizing nanocomposite membranes have been an interes...
One of the most challenging goals in nanoparticle research is to develop successful protocols for th...
A nanocomposite magnetic material was developed using iron nanoparticles with a diameter of less tha...
Fokus ove doktorske disertacije je na pripremi i karakterizaciji magnetnihnanokompozitnih membrana z...
Please take our one minute survey! This Thesis is brought to you for free and open access by the The...