Article citationsMore>>
P. Kharel, S. Talebi, B. Ramachandran, A. Dixit, V. M. Naik, M. B. Sahana, C. Sudakar, R. Naik, M. S. R. Rao and G. Lawes, “Structural, Magnetic, and Electrical Studies on Polycrystalline Transition-Metal-Doped BiFeO3 Thin Films,” Journal of Physics: Condensed Matter, Vol. 21, No. 3, 2009, pp. 036001-036006.
doi:10.1088/0953-8984/21/3/036001
has been cited by the following article:
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TITLE:
Magnetic and Photocatalytic Behaviors of Ca Mn Co-Doped BiFeO3 Nanofibres
AUTHORS:
Yannan Feng, Huanchun Wang, Yang Shen, Yuanhua Lin, Cewen Nan
KEYWORDS:
Bismuth Ferrite; Nanofibre; Magnetic; Photocatalytic
JOURNAL NAME:
Modern Research in Catalysis,
Vol.2 No.3A,
August
21,
2013
ABSTRACT: Ca and Mn co-doped BiFeO3 ultrafine
nanofibres were prepared with the purpose of improving magnetic and photocatalytic
performances of the one-dimensional multiferroic material. Impurity phase
introduced by both Bi fluctuation and Mn substitution can be suppressed by Ca
doping and a space group transition from R3c to C222 can also be triggered by
Bi-site doping. With co-substitution of Mn into iron site, the Ca0.15Bi0.85Mn0.05Fe0.95O3 nanofibres presented a larger saturation magnetization than the singly Ca
doping samples, possibly due to the increased double exchange interation of Fe3+-O-Fe2+,
strengthened by Ca and Mn. Photocatalytic degradation test witnessed a similar
drop-and-rise performance with the magnetism.