Using temperature-resolved dielectric spectroscopy in the range 25–320 K we investigate the macroscopic response, phase symmetry, and order/disorder states in bulk ferroelectric K1−yLiyTa1−xNbx (KLTN). Four longrange symmetry phases are identified with their relative transitions. Directional analysis of the order/disorder states using Fr ̈ohlich entropy indicates global symmetry breaking along the growth axis and an anisotropic dipolar effective thermodynamic behavior, which ranges from disordered to ordered at the same temperature for different directions in the sample. Results indicate that the macroscopic polarization, driven by nanosized polar regions, follows a microscopic perovskite eight-sites lattice model
We use a combination of variable-temperature high-resolution synchrotron X-ray powder diffraction me...
We use a combination of variable-temperature high-resolution synchrotron X-ray powder diffraction me...
Perovskite oxides with a charge/site disorder possess superior dielectric, ferroelectric and electro...
K0.5Bi0.5TiO3 (KBT)one of the few perovskite-like ferroelectric compounds with room-temperature tet...
We have quantitatively measured the temperature dependence of the local distortions of PbTiO3, cryst...
Molecular dynamics simulations of the perovskite oxide KNbO<SUB>3</SUB> are performed with a first-p...
Structural change arising from correlated lattice and charge interaction in complex, multi-element, ...
Many order–disorder-type phase transitions in molecule-based ferroelectrics are related to changes o...
Double-loop electric-field vs polarization hysteresis is investigated in a depoled compositionally d...
We have quantitatively measured the temperature dependence of the local distortions of PbTiO 3 cryst...
Dielectric permittivity and Raman-scattering studies reveal unconventional dipole ordering and struc...
The nexus between classic ferroelectricity and the structure of perovskite materials hinges on the c...
Compositionally disordered perovskite compounds have been one of the exotic topics of research durin...
We use a combination of variable-temperature high-resolution synchrotron X-ray powder diffraction me...
The mechanisms behind the exceptional photovoltaic properties of the metallorganic perovskites are s...
We use a combination of variable-temperature high-resolution synchrotron X-ray powder diffraction me...
We use a combination of variable-temperature high-resolution synchrotron X-ray powder diffraction me...
Perovskite oxides with a charge/site disorder possess superior dielectric, ferroelectric and electro...
K0.5Bi0.5TiO3 (KBT)one of the few perovskite-like ferroelectric compounds with room-temperature tet...
We have quantitatively measured the temperature dependence of the local distortions of PbTiO3, cryst...
Molecular dynamics simulations of the perovskite oxide KNbO<SUB>3</SUB> are performed with a first-p...
Structural change arising from correlated lattice and charge interaction in complex, multi-element, ...
Many order–disorder-type phase transitions in molecule-based ferroelectrics are related to changes o...
Double-loop electric-field vs polarization hysteresis is investigated in a depoled compositionally d...
We have quantitatively measured the temperature dependence of the local distortions of PbTiO 3 cryst...
Dielectric permittivity and Raman-scattering studies reveal unconventional dipole ordering and struc...
The nexus between classic ferroelectricity and the structure of perovskite materials hinges on the c...
Compositionally disordered perovskite compounds have been one of the exotic topics of research durin...
We use a combination of variable-temperature high-resolution synchrotron X-ray powder diffraction me...
The mechanisms behind the exceptional photovoltaic properties of the metallorganic perovskites are s...
We use a combination of variable-temperature high-resolution synchrotron X-ray powder diffraction me...
We use a combination of variable-temperature high-resolution synchrotron X-ray powder diffraction me...
Perovskite oxides with a charge/site disorder possess superior dielectric, ferroelectric and electro...