We show that flash sintering produces single-phase, nanograin-sized polycrystals of isovalent-substituted multiferroic ceramics of complex compositions. Single-phase polycrystals of BiRFeO (R = La, Sm, Y) were produced at a furnace temperature of ~650°C in a few seconds by the application of an electric field of 50 V cm, with the current limit set to 40 mA mm. The dielectric and insulating properties compared favorably with expected values. Impedance spectroscopy suggests electrically homogenous microstructure, except for the sample BiLaFeO that shows a small grain boundary contribution to the impedance. These results reinforce the enabling nature of flash sintering for ceramics which pose difficulties in conventional sintering because they...
Off-stoichiometric multiferroic (Bi1.1FeO3) ceramics were synthesized by the conventional powder met...
Single-phase multiferroic BiFeO3 (BFO) powders were prepared by hydrothermal microwave synthesis and...
In this paper, major reduction in sintering time, temperautre and significant improvement over final...
Mixed powders of BiO and FeO are shown to yield single-phase, dense nanostructured polycrystals of B...
We show that BiFeO, that is electrically homogeneous, is a good insulator, and has a low dielectric ...
For ceramic materials, it has been recently shown in literature that applying a small electric field...
BiFeO3 is one of the most promising multiferroic (materials combining two or more ferroic properties...
Bismuth ferrite (BiFeO3, or BFO) is a multiferroic oxide ceramic that has unique properties at the n...
AbstractBiFeO3-based nanopowders were prepared via a sol-gel method, in which the gel (with metal-ni...
481-485Polycrystalline samples of BiFeO3 are synthesized at low temperature using sol-gel technique...
Dense and single phase BiFeO 3 (BFO) ceramics were prepared using attrition milled calcined (coarse)...
In this work, the 0.67BiFeO3-0.33BaTiO3 ferroelectric ceramic was prepared by Reaction Flash Sinteri...
Dense BiFeO3 ceramics were prepared by a novel spark plasma sintering (SPS) technique. The sintering...
Low temperature magnetic properties of BiFeO3 powders sintered by flash and spark plasma sintering w...
A new phenomenon where the application of modest electric fields can lower the sintering temperature...
Off-stoichiometric multiferroic (Bi1.1FeO3) ceramics were synthesized by the conventional powder met...
Single-phase multiferroic BiFeO3 (BFO) powders were prepared by hydrothermal microwave synthesis and...
In this paper, major reduction in sintering time, temperautre and significant improvement over final...
Mixed powders of BiO and FeO are shown to yield single-phase, dense nanostructured polycrystals of B...
We show that BiFeO, that is electrically homogeneous, is a good insulator, and has a low dielectric ...
For ceramic materials, it has been recently shown in literature that applying a small electric field...
BiFeO3 is one of the most promising multiferroic (materials combining two or more ferroic properties...
Bismuth ferrite (BiFeO3, or BFO) is a multiferroic oxide ceramic that has unique properties at the n...
AbstractBiFeO3-based nanopowders were prepared via a sol-gel method, in which the gel (with metal-ni...
481-485Polycrystalline samples of BiFeO3 are synthesized at low temperature using sol-gel technique...
Dense and single phase BiFeO 3 (BFO) ceramics were prepared using attrition milled calcined (coarse)...
In this work, the 0.67BiFeO3-0.33BaTiO3 ferroelectric ceramic was prepared by Reaction Flash Sinteri...
Dense BiFeO3 ceramics were prepared by a novel spark plasma sintering (SPS) technique. The sintering...
Low temperature magnetic properties of BiFeO3 powders sintered by flash and spark plasma sintering w...
A new phenomenon where the application of modest electric fields can lower the sintering temperature...
Off-stoichiometric multiferroic (Bi1.1FeO3) ceramics were synthesized by the conventional powder met...
Single-phase multiferroic BiFeO3 (BFO) powders were prepared by hydrothermal microwave synthesis and...
In this paper, major reduction in sintering time, temperautre and significant improvement over final...