Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7886759 | Ceramics International | 2018 | 14 Pages |
Abstract
We have prepared Ba1-xSrxCoFe11O19 hexaferrite nanoparticles (NPs) by using a co-precipitation method. The crystal/electronic structures and magnetic properties were then studied. Results revealed that all Ba1-xSrxCoFe11O19 NPs with particle sizes of 100-300â¯nm crystallized in a hexagonal structure. Both the particle shape and the unit-cell parameters are changed when Sr content (x) increases. The analysis of the electronic structure based on the Fe and Co K-edge XAS spectra proved the oxidation states of Fe and Co to be 3â¯+â¯and 2â¯+â¯, respectively, which are stable versus an x change in Ba1-xSrxCoFe11O19. Local-structural studies also revealed the average bond length between Fe and O of 1.89-1.91â¯Ã
less changed by Sr doping. Though the electronic structures of Fe and Co were unchanged, the studies about the magnetic property demonstrated a strong dependence of Ms and Hc on Sr doping. While Ms decreases from 46.1â¯emu/g for xâ¯=â¯0-34.2â¯emu/g for xâ¯=â¯1, Hc tends to increase from 1630â¯Oe for xâ¯=â¯0 to ~ 2200â¯Oe for xâ¯=â¯0.5, but slightly decreases to 2040â¯Oe for xâ¯=â¯1. We think that the addition of the exchange interaction between Fe3+ and Co2+ ions and the changes of local-geometric structures and microstructures influenced directly Ms and Hc of NPs.
Related Topics
Physical Sciences and Engineering
Materials Science
Ceramics and Composites
Authors
N. Tran, H.S. Kim, T.L. Phan, D.S. Yang, B.W. Lee,