Magneto-dielectric properties of polymer– Fe3O4 nanocomposites
نویسندگان
چکیده
The aim of this research is to elucidate the size effect of magnetic nanoparticles on the resultant magneto-dielectric properties of polymer nanocomposites at radio frequencies. The block copolymer of [styrene-b-ethylene/butylene-b-styrene] (SEBS) was utilized as a matrix for the templating of magnetic nanoparticles. Surfactant-modified iron oxide (Fe3O4) nanoparticles of various sizes were successfully synthesized by a seed-mediated growth method. The surfactant prevented Fe3O4 aggregation and provided compatibility with the polymer matrix. The nucleation and growth of Fe3O4 nanoparticles was controlled by changing the concentration ratio of surfactant to iron-precursor. The free iron ions present during synthesis are the major factor contributing to the growth of larger particles. The Fe3O4 nanoparticle critical size for superparamagnetic to ferrimagnetic transition was determined to be near 30nm at room temperature. The dielectric permittivity ðerÞ of the polymer composite increased with increasing amount of Fe3O4 doping, and was not influenced by nanoparticle size. However, the magnetic permeability (mr) of the composites was significantly influenced by the size of Fe3O4 nanoparticles templated within the block copolymer matrix due to thermal energy fluctuations from the nanoparticle
منابع مشابه
Surfactant-modified nickel zinc iron oxide/polymer nanocomposites for radio frequency applications
Low loss, flexible, polymer nanocomposites with improved magneto-dielectric properties at radio frequencies (RF) were successfully fabricated. Surfactant-modified nickel zinc iron oxide (NiZnFe2O4) nanoparticles with ferrimagnetic behavior at room temperature were synthesized by a seed-mediated growth method. The surfactant prevented NiZnFe2O4 particle aggregation and provided compatibility wit...
متن کاملEnhanced dielectric properties of poly(vinylidene fluoride) composites filled with nano iron oxide-deposited barium titanate hybrid particles
We report enhancement of the dielectric permittivity of poly(vinylidene fluoride) (PVDF) generated by depositing magnetic iron oxide (Fe3O4) nanoparticles on the surface of barium titanate (BT) to fabricate BT-Fe3O4/PVDF composites. This process introduced an external magnetic field and the influences of external magnetic field on dielectric properties of composites were investigated systematic...
متن کاملControlled synthesis of core-shell iron-silica nanoparticles and their magneto-dielectric properties in polymer composites.
Low loss core-shell iron-silica nanocomposites with improved magneto-dielectric properties at radio frequencies (1 MHz-1 GHz) were successfully fabricated. A new simple method was developed to synthesize metallic iron (Fe) nanoparticles with uniform size distribution in an aqueous environment at room temperature. Citric acid and oleic acid served as surface-capping agents to control the particl...
متن کاملDielectric properties of polymer composites with the addition of ferrite nanoparticles
The aim of the work was examination of the dielectric properties of a new type of polymer nanocomposites based on PVDF (polyvinylidene fluoride), or a copolymer P(VDF-HFP) with addition of ferrite nanoparticles. The addition of nanofillers leads not only to the formation of polar -phase of PVDF, which shows unique piro-, piezoand ferroelectric properties used in many applications, but also aff...
متن کاملSandwich-structured polymer nanocomposites with high energy density and great charge-discharge efficiency at elevated temperatures.
The demand for a new generation of high-temperature dielectric materials toward capacitive energy storage has been driven by the rise of high-power applications such as electric vehicles, aircraft, and pulsed power systems where the power electronics are exposed to elevated temperatures. Polymer dielectrics are characterized by being lightweight, and their scalability, mechanical flexibility, h...
متن کامل