Ferroelectric materials exhibit a strong coupling between strain and electrical polarization. In epitaxial thin films, the strain induced by the substrate can be used to tune the domain structure. Substrates of rare-earth scandates are sometimes selected for the growth of ferroelectric oxides because of their close lattice match, which allows the growth of low-strain dislocation-free layers. Transmission electron microscopy (TEM) is a frequently used technique for investigating ferroelectric domains at the nanometer-scale. However, it requires to thin the specimen down to electron transparency, which can modify the strain and the electrostatic boundary conditions. Here, we have investigated a 320 nm thick epitaxial layer of BaTiO3 grown ont...
We study the complex ferroelastic/ferroelectric domain structure in the prototypical ferroelectric P...
Lead zirconate titanate samples are used for their piezoelectric and ferroelectric properties in var...
TbMnO3 films have been grown under compressive strain on (001)-oriented SrTiO3 crystals. They have a...
Ferroelectric materials exhibit a strong coupling between strain and electrical polarization. In epi...
Ferroelectric materials exhibit a strong coupling between strain and electrical polarization. In epi...
Epitaxial strain in ferroelectric films offers the possibility to enhance the piezoelectric performa...
Lead zirconate titanate samples are used for their piezoelectric and ferroelectric properties in var...
The application of lattice strain through epitaxial growth of oxide films on lattice mismatched pero...
The application of lattice strain through epitaxial growth of oxide films on lattice mismatched pero...
Epitaxial thin films offer enhanced control of the microstructure compared to bulk materials,as well...
Thin films of PbTiO3, a classical ferroelectric, have been grown under tensile strain on single-crys...
To obtain the electrical properties of strained ferroelectric thin films, bottom electrodes with lat...
Epitaxial strain can be efficiently used to modify the properties of ferroelectric thin films. From ...
NaNbO3 thin films have been grown under anisotropic biaxial strain on several oxide substrates byliq...
Epitaxial strain in ferroelectric films offers the possibility to enhance the piezoelectric performa...
We study the complex ferroelastic/ferroelectric domain structure in the prototypical ferroelectric P...
Lead zirconate titanate samples are used for their piezoelectric and ferroelectric properties in var...
TbMnO3 films have been grown under compressive strain on (001)-oriented SrTiO3 crystals. They have a...
Ferroelectric materials exhibit a strong coupling between strain and electrical polarization. In epi...
Ferroelectric materials exhibit a strong coupling between strain and electrical polarization. In epi...
Epitaxial strain in ferroelectric films offers the possibility to enhance the piezoelectric performa...
Lead zirconate titanate samples are used for their piezoelectric and ferroelectric properties in var...
The application of lattice strain through epitaxial growth of oxide films on lattice mismatched pero...
The application of lattice strain through epitaxial growth of oxide films on lattice mismatched pero...
Epitaxial thin films offer enhanced control of the microstructure compared to bulk materials,as well...
Thin films of PbTiO3, a classical ferroelectric, have been grown under tensile strain on single-crys...
To obtain the electrical properties of strained ferroelectric thin films, bottom electrodes with lat...
Epitaxial strain can be efficiently used to modify the properties of ferroelectric thin films. From ...
NaNbO3 thin films have been grown under anisotropic biaxial strain on several oxide substrates byliq...
Epitaxial strain in ferroelectric films offers the possibility to enhance the piezoelectric performa...
We study the complex ferroelastic/ferroelectric domain structure in the prototypical ferroelectric P...
Lead zirconate titanate samples are used for their piezoelectric and ferroelectric properties in var...
TbMnO3 films have been grown under compressive strain on (001)-oriented SrTiO3 crystals. They have a...