Improvements in magnetodielectric and multiferroic properties are essential for visualizing the real application of multiferroics, precisely, BiFeO3 (BFO). An enhancement of multiferroic and magnetodielectric properties has been achieved for chemically prepared nanocrystalline BFO by virtue of Sm doping. The X-ray diffraction study confirms the growth of single phase nanocrystalline BFO which corroborates TEM observation. The magnetic study delineates the ferromagnetic behavior of nanocrystalline Sm-doped BFO samples even at room temperature, which is absent in pristine samples. Surprisingly, a few orders of magnitude increase in resistivity is observed in Sm doped samples. Room temperature ferroelectric measurement showed that Sm doping im...
Multiferroic nanomaterials bear draw attention plenty consideration on account of the mixture of two...
BiFeO3 (BFO) nanoparticles (NPs) were synthesized using the sol-gel method at different calcination ...
The weak and deficient manipulation of charge-spin coupling in multiferroic BiFeO3 (BFO) notoriously...
Improvements in magnetodielectric and multiferroic properties are essential for visualizing the real...
Improvements in magnetodielectric and multiferroic properties are essential for visualizing the real...
Improvements in magnetodielectric and multiferroic properties are essential for visualizing the real...
Enhancement of multiferroic properties of bismuth ferrite (BFO) is a real challenge to the scientifi...
An enhancement in multiferroic properties has been achieved for chemically prepared BFO nanoparticle...
An enhancement in multiferroic properties has been achieved for chemically prepared BFO nanoparticle...
Pure and doped multiferroic samples of bismuth ferrite (BFO) were successfully synthesized by the so...
International audienceBismuth ferrite (BFO) is the drosophila of research in multiferroic materials ...
International audienceBismuth ferrite (BFO) is the drosophila of research in multiferroic materials ...
International audienceBismuth ferrite (BFO) is the drosophila of research in multiferroic materials ...
Large leakage current and a very low magnetic moment are the two most disadvantages of BiFeO3 (BFO),...
International audienceBismuth ferrite (BFO) is the drosophila of research in multiferroic materials ...
Multiferroic nanomaterials bear draw attention plenty consideration on account of the mixture of two...
BiFeO3 (BFO) nanoparticles (NPs) were synthesized using the sol-gel method at different calcination ...
The weak and deficient manipulation of charge-spin coupling in multiferroic BiFeO3 (BFO) notoriously...
Improvements in magnetodielectric and multiferroic properties are essential for visualizing the real...
Improvements in magnetodielectric and multiferroic properties are essential for visualizing the real...
Improvements in magnetodielectric and multiferroic properties are essential for visualizing the real...
Enhancement of multiferroic properties of bismuth ferrite (BFO) is a real challenge to the scientifi...
An enhancement in multiferroic properties has been achieved for chemically prepared BFO nanoparticle...
An enhancement in multiferroic properties has been achieved for chemically prepared BFO nanoparticle...
Pure and doped multiferroic samples of bismuth ferrite (BFO) were successfully synthesized by the so...
International audienceBismuth ferrite (BFO) is the drosophila of research in multiferroic materials ...
International audienceBismuth ferrite (BFO) is the drosophila of research in multiferroic materials ...
International audienceBismuth ferrite (BFO) is the drosophila of research in multiferroic materials ...
Large leakage current and a very low magnetic moment are the two most disadvantages of BiFeO3 (BFO),...
International audienceBismuth ferrite (BFO) is the drosophila of research in multiferroic materials ...
Multiferroic nanomaterials bear draw attention plenty consideration on account of the mixture of two...
BiFeO3 (BFO) nanoparticles (NPs) were synthesized using the sol-gel method at different calcination ...
The weak and deficient manipulation of charge-spin coupling in multiferroic BiFeO3 (BFO) notoriously...