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Defect driven multiferroicity in Gd doped BiFeO3 at room temperature
Authors:S.K. Pradhan  P.P. Rout  D.K. Mishra  A.K. Pradhan  B.B. Nayak  B.K. Roul
Affiliation:a Institute of Materials Science, Planetarium Building, Acharya Vihar, Bhubaneswar 751 013, India
b Institute of Minerals and Materials Technology, Bhubaneswar 751013, India
c School of Physics, University of the Witwatersrand, Private Bag-3, Wits-2050, Johannesburg, South Africa
d Department of Engineering and Materials Science and Engineering, Norfolk State University, 700 Park Avenue, MVMCAR 523 Norfolk, VA 23504, USA
e National Center for Nano Structured Materials, Mechatronics and MicroManufacturing, MSM Division, Building 14F, Room-131, CSIR, Pretoria, South Africa
f Institute of Physics, Sachivalaya Marg, Bhubaneswar 751005, India
Abstract:This paper reports that defect driven magnetism can be obtained at room temperature by optimizing metal ion concentration in bismuth ferrite (BFO) following our novel slow step solid state sintering route. We observed a clean signature of enhanced multiferroic behavior in Gd doped bismuth ferrite (Gd-BFO) bulk ceramics at room temperature (RT). Bismuth rich iron deficient Gd-BFO ceramics were prepared by solid state route through slow step sintering schedule at 850 °C. At particular composition, (Bi1.2Gd0.1Fe0.8O3), this materials completely transform from rhombohedral R3c to orthorhombic Pn21a space group. We emphasized that excess bismuth is expected to act as point defects and occupy interstitials positions, which in turn interact by oxygen vacancies. These defects are likely to promote defect driven ferromagnetism in BFO system. Incorporation of Gd in presence of excess bismuth in BFO enhanced both spin and electric polarization at room temperature. We also infer that Gd substitution in BFO is likely to suppress spiral spin modulation, which also favors ferromagnetism in Gd-BFO.
Keywords:Multiferroic   Ceramic   Defect   Slow step sintering schedule   Magnetization   Polarization
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