Author/Authors :
Hedayati, Kambiz Department of Science, Arak University of Technology, Arak , Goodarzi, Mojtaba Department of Science, Arak University of Technology, Arak , Ghanbari, Davood Young Researchers and Elite Club, Arak Branch, Islamic Azad University, Arak
Abstract :
Fe3O4 nanostructures were synthesized via a facile hydrothermal reaction. The effect of various surfactants such as cationic and anionic on the morphology of the product was investigated. Magnetic nanoparticles were added to poly styrene for preparation of magnetic nanocomposite. Nanostructures were then characterized using X-ray diffraction, scanning electron microscopy and Fourier transform infrared spectroscopy. The magnetic properties of the samples were also investigated using vibrating sample magnetometer. The magnesium ferrite nanoparticles exhibit super paramagnetic behaviour at room temperature, with a saturation magnetization of 66 emu/g and a coercivity less than 5 Oe. Distribution of the magnetic nanoparticles into poly styrene matrix increases the coercivity. Nanoparticles appropriately enhanced flame retardant property of the PS matrix. Nanoparticles act as barriers which decrease thermal transport and volatilization during decomposition of the polymer.
Keywords :
Flame Retardancy , Magnetic , Nanocomposite , Nanoparticles