Effect of interface recombination on magnetoelectric coupling in CoFe(2)O(4)-BaTiO(3) composites

The (1-x)CoFe(2)O(4)+xBaTiO(3) (x=0.5) magnetoelectric(ME) nano-powders were prepared by molten salt synthesis method and the corresponding ceramics were sintered. The morphology and structure of as-prepared powders and ceramics were characterized and studied systematically by using XRD, SEM and EDX...

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Veröffentlicht in:Transactions of Nonferrous Metals Society of China 2009-12, Vol.19 (6), p.1593-1598
Hauptverfasser: Nie, Jun-Wu, Xu, Guo-Yue, Qi, Xian-Jin
Format: Artikel
Sprache:eng
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Zusammenfassung:The (1-x)CoFe(2)O(4)+xBaTiO(3) (x=0.5) magnetoelectric(ME) nano-powders were prepared by molten salt synthesis method and the corresponding ceramics were sintered. The morphology and structure of as-prepared powders and ceramics were characterized and studied systematically by using XRD, SEM and EDX. In particles, the two phases, CoFe(2)O(4) and BaTiO(3), are symbiotic with nano-scale coordinate lattice. A considerable ME coefficient(a(E)) of about 15.96 mV/A is observed in the x=0.5 ME ceramic, which is attributed to the better interface sintered by using those nano-particles with the two phases and a correct poling strategy on the sample. But the interface between the phases has gone through a separating and recombinating during their sintering process. A two-time sintering process was also performed on those ceramics while the a(E) of the x=0.5 two-time sintered ceramic drops to 67.7 kV/A, which could be explained by the split of the interface during the recombination in the ceramics preparation.
ISSN:1003-6326
DOI:10.1016/S1003-6326(09)60076-5