Understanding the domain structure of ferroelectric ceramics is very important to develop sound knowledge of the influence of the microstructure on the macroscopic properties. To proceed in this direction, experimental tools are necessary in order to quantify the domain patterns in ferroelectrics. This study on BaTiO3 single crystals exemplifies how vector piezoresponse force microscopy can be used to obtain statistical information about domain directions
Ferroelectric nanodomains were created in BaTiO(3) thin films by applying a voltage to a sharp condu...
Structure of 90{degree} ferroelectric domain boundaries in barium titanate ceramics has been studied...
The aim of this doctoral research is to understand domain evolution processes in ferroelectrics usin...
Understanding the domain structure of ferroelectric ceramics is very important to develop sound know...
Piezoresponse force microscopy (PFM) is commonly used for studying the polarization domain pattern i...
Ferroelectric domain structure in BaTiO3 ceramics was studied with nanoscale spatial resolution befo...
The Atomic Force Acoustic Microscope technique (AFAM) has been applied in order to investigate the e...
In this paper, nanoscale domain patterns of ferroelectric ceramics were investigated by both piezoel...
The domain configurations and local piezoresponse property of the [720]-cut BaTiO3 single crystal an...
Piezoresponse force microscopy has been used for the local characterization of high sensitivity piez...
The research was made possible by President of Russian Federation grant for young scientists (MK-365...
In this paper, nanoscale domain patterns of ferroelectric ceramics were investigated by both atomic ...
Japanese Journal of Applied Physics, Part 1: Regular Papers and Short Notes and Review Papers369 A55...
Ferroelectric materials, such as BaTiO3, have piezoelectric properties that make them attractive for...
The domain structure of ferroelectric and multiferroic materials can have a significant effect on pi...
Ferroelectric nanodomains were created in BaTiO(3) thin films by applying a voltage to a sharp condu...
Structure of 90{degree} ferroelectric domain boundaries in barium titanate ceramics has been studied...
The aim of this doctoral research is to understand domain evolution processes in ferroelectrics usin...
Understanding the domain structure of ferroelectric ceramics is very important to develop sound know...
Piezoresponse force microscopy (PFM) is commonly used for studying the polarization domain pattern i...
Ferroelectric domain structure in BaTiO3 ceramics was studied with nanoscale spatial resolution befo...
The Atomic Force Acoustic Microscope technique (AFAM) has been applied in order to investigate the e...
In this paper, nanoscale domain patterns of ferroelectric ceramics were investigated by both piezoel...
The domain configurations and local piezoresponse property of the [720]-cut BaTiO3 single crystal an...
Piezoresponse force microscopy has been used for the local characterization of high sensitivity piez...
The research was made possible by President of Russian Federation grant for young scientists (MK-365...
In this paper, nanoscale domain patterns of ferroelectric ceramics were investigated by both atomic ...
Japanese Journal of Applied Physics, Part 1: Regular Papers and Short Notes and Review Papers369 A55...
Ferroelectric materials, such as BaTiO3, have piezoelectric properties that make them attractive for...
The domain structure of ferroelectric and multiferroic materials can have a significant effect on pi...
Ferroelectric nanodomains were created in BaTiO(3) thin films by applying a voltage to a sharp condu...
Structure of 90{degree} ferroelectric domain boundaries in barium titanate ceramics has been studied...
The aim of this doctoral research is to understand domain evolution processes in ferroelectrics usin...