Size dependent magnetic and electrical properties of Ba-doped nanocrystalline BiFeO
arXiv:1607.00169 · doi:10.1063/1.4944817
Abstract
Improvement in magnetic and electrical properties of multiferroic BiFeO in conjunction with their dependence on particle size is crucial due to its potential applications in multifunctional miniaturized devices. In this investigation, we report a study on particle size dependent structural, magnetic and electrical properties of sol-gel derived BiBaFeO nanoparticles of different sizes ranging from 12 to 49 nm. The substitution of Bi by Ba significantly suppresses oxygen vacancies, reduces leakage current density and Fe state. An improvement in both magnetic and electrical properties is observed for 10 % Ba-doped BiFeO nanoparticles compared to its undoped counterpart. The saturation magnetization of BiBaFeO nanoparticles increase with reducing particle size in contrast with a decreasing trend of ferroelectric polarization. Moreover, a first order metamagnetic transition is noticed for 49 nm BiBaFeO nanoparticles which disappeared with decreasing particle size. The observed strong size dependent multiferroic properties are attributed to the complex interaction between vacancy induced crystallographic defects, multiple valence states of Fe, uncompensated surface spins, crystallographic distortion and suppression of spiral spin cycloid of BiFeO.
9