Title of article :
Influence of Cr3+ substitution on the electrical and magnetic properties of Ni0.4Cuo.4Zno.2Fe204 nanoparticles
Author/Authors :
Kadam, Ramkrishna H , Karim, Asif , Kadam, Ankush B , Gaikwad, Anil S , Shirsath, Sagar E Faculty of Engineering - Shinshu University
Abstract :
Abstract The Nig4Cuo,2Zno4 ferrites with different concentrations of Cr3+ were synthesized at a low temperature (450°C) using sol-gel auto-combustion method. The X-ray diffraction analysis of the samples confirms the formation of a single-phase cubic spinel structure. The lattice constant decreases from 8.331 to 8.253 À with an increase in Crat substitution. Bulk density decreases from 4.95 to 4.71 gm/cm' whereas porosity increases from 9.34% to 14.76%
with an increase in Cr* substitution. Transmission electron microscopy was adopted to determine the particle size. Particle size decreases from 19 to 13 nm with the addition of Cr3+ ions. Saturation magnetization, coercivity, and other hysteresis parameters were measured using a vibrating sample magnetometer at room temperature with a
maximum magnetic field of 8 koe. Magnetization decreases from 62 to 48 emu/g, whereas coercivity increases from 65 to 180 Oe. The direct current (DC) resistivity increases from 3.62 x 10° to 4.21 x 100 cm with Cr3+ content x. The dielectric constant (e') decreases with increasing concentration of Cr3+ ions.
Keywords :
Magnetic properties , Electrical properties , Ferrite nanoparticles
Journal title :
Astroparticle Physics