Using high resolution powder x-ray and neutron diffraction experiments, we determined the off-centered displacement of the ions within a unit cell and magnetoelectric coupling in nanoscale BiFeO3 (approximate to 20-200 nm). We found that both the off-centered displacement of the ions and magnetoelectric coupling exhibit nonmonotonic variation with particle size. They increase as the particle size reduces from bulk and reach maximum around 30 nm. With further decrease in particle size, they decrease precipitously. The magnetoelectric coupling is determined by the anomaly in off-centering of ions around the magnetic transition temperature (TN). The ions, in fact, exhibit large anomalous displacement around the TN which is analyzed using group...
Using high resolution powder neutron diffraction data, we show that there is a distinct anomaly in t...
Magnetoelectric coupling is the material based coupling between electric and magnetic fields without...
We report on size induced microstrain-dependent magnetic properties of BiFeO3 nanoparticles.The micr...
Abstract Using high resolution powder x-ray and neutron diffraction experiments, we determined the o...
We report the results of direct measurement of remanent hysteresis loops on nanochains of BiFeO3 at ...
The nanorods and nanocuboids of multiferroic BiFeO3 exhibit remarkable shape dependence of crystallo...
The saturation magnetization (M(S)), antiferromagnetic transition point (T(N)), and the off-center d...
International audienceUsing high resolution powder neutron diffraction data, we show that there is a...
We report results of a comprehensive study of the phase transition at T-N (similar to 643 K) as a fu...
Using the results of x-ray and neutron diffraction experiments, we show that the ferroelectric polar...
Isolated nonmagnetic substitutional defect ions experience huge coupled electric magnetic interactio...
Using high resolution powder neutron diffraction data, we show that there is a distinct anomaly in t...
BiFeO3 is a multiferroic materials in which ferroelectric and anti-ferromagnetic orders coexist well...
BiFeO3 (BFO) nanoparticles (NPs) were synthesized using the sol-gel method at different calcination ...
Bismuth ferrite (BiFeO3) is a unique magnetoelectric multiferroic that exhibits the coexistence of f...
Using high resolution powder neutron diffraction data, we show that there is a distinct anomaly in t...
Magnetoelectric coupling is the material based coupling between electric and magnetic fields without...
We report on size induced microstrain-dependent magnetic properties of BiFeO3 nanoparticles.The micr...
Abstract Using high resolution powder x-ray and neutron diffraction experiments, we determined the o...
We report the results of direct measurement of remanent hysteresis loops on nanochains of BiFeO3 at ...
The nanorods and nanocuboids of multiferroic BiFeO3 exhibit remarkable shape dependence of crystallo...
The saturation magnetization (M(S)), antiferromagnetic transition point (T(N)), and the off-center d...
International audienceUsing high resolution powder neutron diffraction data, we show that there is a...
We report results of a comprehensive study of the phase transition at T-N (similar to 643 K) as a fu...
Using the results of x-ray and neutron diffraction experiments, we show that the ferroelectric polar...
Isolated nonmagnetic substitutional defect ions experience huge coupled electric magnetic interactio...
Using high resolution powder neutron diffraction data, we show that there is a distinct anomaly in t...
BiFeO3 is a multiferroic materials in which ferroelectric and anti-ferromagnetic orders coexist well...
BiFeO3 (BFO) nanoparticles (NPs) were synthesized using the sol-gel method at different calcination ...
Bismuth ferrite (BiFeO3) is a unique magnetoelectric multiferroic that exhibits the coexistence of f...
Using high resolution powder neutron diffraction data, we show that there is a distinct anomaly in t...
Magnetoelectric coupling is the material based coupling between electric and magnetic fields without...
We report on size induced microstrain-dependent magnetic properties of BiFeO3 nanoparticles.The micr...