Title of article :
First principles study of three-component SrTiO3/BaTiO3/PbTiO3
ferroelectric superlattices
Author/Authors :
S. H. Shah ، نويسنده , , P. D. BRISTOWE، نويسنده , , A. M. Kolpak، نويسنده , ,
A. M. Rappe، نويسنده ,
Issue Information :
دوهفته نامه با شماره پیاپی سال 2008
Abstract :
The geometrical, chemical and ferroelectric
properties of a new nanoscale short-period three-component
SrTiO3/BaTiO3/PbTiO3 perovskite superlattice are
investigated using a first principles density functional
approach. The study focuses on varying the thickness of
each component in the superlattice and determining the
resulting lattice distortion and total polarization. Thicknesses
of up to three unit cells in a single component are
considered and the in-plane lattice constants normal to the
[001] stacking direction are fixed to the bulk SrTiO3 values
to simulate a rigid substrate. It is found that the PbTiO3
layers play a key role in strain and polarization enhancement.
By increasing the amount of PbTiO3 in the
superlattices the strain in the other components increases
significantly resulting in an enhanced total polarization of
the superlattice relative to bulk BaTiO3. Increasing the
number of BaTiO3 layers also improves the overall polarization.
All the SrTiO3 layers in each superlattice are found
to be highly polarized. Many of the calculated features are
similar to those found previously by others for the SrTiO3/
BaTiO3/CaTiO3 superlattice, although in the present study
significantly greater enhancement factors and polarization
values are found. The predicted enhancement of the
polarization is mostly attributed to lattice strain due to
mismatch of the in-plane lattice constant of the threecomponent
materials.
Journal title :
Journal of Materials Science
Journal title :
Journal of Materials Science