The nature of the stress and electric field driven structural and microstructural transformations in the morphotropic phase boundary (MPB) compositions of the high Curie point piezoelectric system BiScO3-PbTiO3 has been examined by ex situ based techniques. Using a powder poling technique, which is based on the concept of exploiting the irreversible structural change that occurs after the application of a strong electric field and stress independently, it was possible to ascertain that both moderate stress and electric field induce identical structural transformation-a fraction of the monoclinic phase transforms irreversibly to the tetragonal phase. Moreover, analysis of the dielectric response before and after poling revealed a counterintu...
Structural analysis of electrically poled samples of polycrystalline, (1-x)Bi(Mg1/2Zr1/2)O-3-xPbTiO(...
The electric-field-induced strain in 93%(Bi0.5Na0.5)TiO3–7%BaTiO3 polycrystalline ceramic is shown t...
The microscopic contributions to the electric-field-induced macroscopic strain in a morphotropic 0.9...
The nature of the stress and electric field driven structural and microstructural transformations in...
Piezoelectric and ex situ electric-field induced structural studies were carried out on closely spac...
A `powder-poling' technique was developed to study electric field induced structural transformations...
A `powder-poling' technique was developed to study electric field induced structural transformations...
We report the first direct evidence that the morphotropic phase boundary in ferroelectric materials,...
There is a general perception that a large piezoelectric response in ferroelectric solid solutions r...
There is a general perception that a large piezoelectric response in ferroelectric solid solutions r...
We report the first direct evidence that the morphotropic phase boundary in ferroelectric materials,...
A comparative study of field-induced domain switching and lattice strain was carried out by in situ ...
There is a general perception that a large piezoelectric response in ferroelectric solid solutions r...
Structural analysis of electrically poled samples of polycrystalline, (1-x)Bi(Mg1/2Zr1/2)O-3-xPbTiO(...
In ferroelectric materials, enhanced dielectric and piezoelectric property coefficients are found in...
Structural analysis of electrically poled samples of polycrystalline, (1-x)Bi(Mg1/2Zr1/2)O-3-xPbTiO(...
The electric-field-induced strain in 93%(Bi0.5Na0.5)TiO3–7%BaTiO3 polycrystalline ceramic is shown t...
The microscopic contributions to the electric-field-induced macroscopic strain in a morphotropic 0.9...
The nature of the stress and electric field driven structural and microstructural transformations in...
Piezoelectric and ex situ electric-field induced structural studies were carried out on closely spac...
A `powder-poling' technique was developed to study electric field induced structural transformations...
A `powder-poling' technique was developed to study electric field induced structural transformations...
We report the first direct evidence that the morphotropic phase boundary in ferroelectric materials,...
There is a general perception that a large piezoelectric response in ferroelectric solid solutions r...
There is a general perception that a large piezoelectric response in ferroelectric solid solutions r...
We report the first direct evidence that the morphotropic phase boundary in ferroelectric materials,...
A comparative study of field-induced domain switching and lattice strain was carried out by in situ ...
There is a general perception that a large piezoelectric response in ferroelectric solid solutions r...
Structural analysis of electrically poled samples of polycrystalline, (1-x)Bi(Mg1/2Zr1/2)O-3-xPbTiO(...
In ferroelectric materials, enhanced dielectric and piezoelectric property coefficients are found in...
Structural analysis of electrically poled samples of polycrystalline, (1-x)Bi(Mg1/2Zr1/2)O-3-xPbTiO(...
The electric-field-induced strain in 93%(Bi0.5Na0.5)TiO3–7%BaTiO3 polycrystalline ceramic is shown t...
The microscopic contributions to the electric-field-induced macroscopic strain in a morphotropic 0.9...